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@STRING{CAD = {Computer Aided Design}}
@STRING{ijnme = {{International Journal for Numerical Methods in Engineering}}}
@STRING{j-AT = {Journal of Approximation Theory}}
@STRING{j-CAGD = {Computer-Aided Geometric Design}}
@STRING{j-CGF = {Comput.\ Graph.\ Forum}}
@STRING{j-CONST-APPROX = {Constructive Approximation}}
@STRING{j-CSGD = {Curves and Surfaces in Geometric Design}}
@STRING{j-NETWORKS = {Networks}}
@STRING{j-NM = {Numerische Mathematik}}
@STRING{j-SIAM-J-NUM-ANAL = {SIAM Journal on Numerical Analysis}}
@STRING{j-TOG = {ACM Trans.\ Graph.}}
@STRING{j-TOMS = {ACM Transactions on Mathematical Software}}
@STRING{jam = {{Journal of Applied Mechanics}}}
@STRING{jpvs = {{Journal of Pressure Vessel Technology}}}
@STRING{p-SGP = {Proc.\ SGP}}
@STRING{p-SCA = {Proc.\ SCA}}
@STRING{p-SMI = {Proc.\ SMI}}
@INPROCEEDINGS{Zayer:2005:SBF,
author = {Zayer, R. and R{\"o}ssl, C. and Seidel, H.-P.},
title = {Setting the Boundary Free: A Composite Approach to Surface Parameterization},
booktitle = p-SGP,
year = {2005},
pages = {91--100},
bibsource = {DBLP, http://dblp.uni-trier.de},
crossref = {DBLP:conf/sgp/2005},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Spaceball,
author = {3DConnexion},
title = {Spaceball},
note = { http://www.3Dconnexion.com/ },
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{certain96,
author = {A.Certain and J. Popovi{\'c} and T. {DeRose} and T. Duchamp and D.
Salesin and W. Stuetzle},
title = {Interactive Multiresolution Surface Viewing},
booktitle = {Proc.\ SIGGRAPH},
year = {1996},
pages = {91--98},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Abadjev:1999:M,
author = {Vadim Abadjev and Miguel del Rosario and Alexei Lebedev and Alexander
Migdal and Victor Paskhaver},
title = {MetaStream},
booktitle = {VRML '99: Proceedings of the 4th Symposium on Virtual Reality Modeling
Language},
year = {1999},
pages = {53--62},
keywords = {multiresolution, progressive transmission, streaming, geometry compression,
progressive meshes}
}
@MISC{ADIFOR,
author = {{ADIFOR}},
title = {{Argonne National Laboratory / Rice University}},
howpublished = {{http://www-unix.mcs.anl.gov/autodiff/ADIFOR/}},
year = {2002},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{adle:99,
author = {M. Adlers},
title = {Computing sparse {QR} factorizations in {MATLAB}},
institution = {Link{\"o}ping University},
year = {1999},
type = {{Tech. Report}},
number = {LiTH-MAT-R-98-19},
address = {Sweden},
kwds = {cg, iter}
}
@TECHREPORT{zhu:3dmls:07,
author = {Yuanchen Zhu and Steven J. Gortler},
title = {3{D} deformation using moving least squares},
institution = {Harvard University},
year = {2007},
number = {Tr-10-07},
address = {Cambridge, MA},
}
@TECHREPORT{LSWBoxConstraints,
author = {Mikael Adlers},
title = {Sparse Least Squares Problems with Box Constraints},
institution = {Division of Numerical Analysis, Department of Mathematics, Link{\"{o}}pings
Universitet},
year = {1988},
type = {Link{\"{o}}ping Studies in Science and Technology (Theses)},
number = {689},
address = {Link{\"{o}}ping, Sweden}
}
@MISC{Photoshop,
author = {{Adobe Systems Inc.}},
title = {{Photoshop CS5}},
month = {July},
year = {2010},
note = {http://www.adobe.com/photoshop/}
}
@INPROCEEDINGS{AdolphGuerke2001,
author = {Adolph, S. and G\"urke, S.},
title = {Modeling of a fitting inlay from various information},
booktitle = {VMV},
year = {2001},
pages = {309--316},
owner = {sorkine},
timestamp = {2008.10.09}
}
@INPROCEEDINGS{Agrawala:1995:PSS,
author = {Agrawala, M. and Beers, A. C. and Levoy, M.},
title = {3{D} painting on scanned surfaces},
booktitle = {SI3D '95: Proceedings of the 1995 symposium on Interactive 3D graphics},
year = {1995},
pages = {145--150},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {Monterey, California, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Aguiar05,
author = {de Aguiar, E. and Theobalt, C. and Magnor, M. and Seidel, H.-P.},
title = {Reconstructing Human Shape and Motion from Multi-View Video},
booktitle = {Proceedings of IEE Conference on Visual Media Production (CVMP'05)},
year = {2005},
pages = {42--49},
month = {December},
location = {London, UK}
}
@ARTICLE{akcelik-ea-03,
author = {Volkan Ak\c{c}elik and George Biros and Omar Ghattas and Kevin~R.
Long and Bart van Bloemen Waanders},
title = {A Variational Finite Element Method for Source Inversion for Convective-Diffusive
Transport},
journal = {Finite Elements in Analysis and Design},
year = {2003},
volume = {39},
pages = {683--705},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{aksoylu2005msu,
author = {Aksoylu, B. and Khodakovsky, A. and Schr\"{o}der, P.},
title = {{Multilevel Solvers for Unstructured Surface Meshes}},
journal = {Siam Journal on Scientific Computing},
year = {2005},
volume = {26},
pages = {1146},
number = {4},
publisher = {Society for industrial and applied mathematics}
}
@ARTICLE{aksoylu,
author = {Burak Aksoylu and Andrei Khodakovsky and Peter Schr{\"o}der},
title = {Multilevel Solvers for Unstructured Surface Meshes},
journal = {SISC},
year = {2005},
volume = {26},
pages = {1146--1165},
number = {4}
}
@ARTICLE{Alexa:2003:DCF,
author = {Marc Alexa},
title = {Differential coordinates for local mesh morphing and deformation},
journal = {The Visual Computer},
year = {2003},
volume = {19},
pages = {105--114},
number = {2},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{AlexaSurvey02,
author = {Marc Alexa},
title = {Recent Advances in Mesh Morphing},
journal = j-CGF,
year = {2002},
volume = {21},
pages = {173--196},
number = {2}
}
@INPROCEEDINGS{AlexaWiener02,
author = {Marc Alexa},
title = {Wiener Filtering of Meshes},
booktitle = p-SMI,
year = {2002},
pages = {51--57}
}
@INPROCEEDINGS{Alexa:2001:LCF,
author = {Marc Alexa},
title = {Local control for mesh morphing},
booktitle = p-SMI,
year = {2001},
pages = {209--215}
}
@INPROCEEDINGS{Alexa:2001:PSS,
author = {M. Alexa and J. Behr and D. Cohen-Or and S. Fleishman and D. Levin
and C. T. Silva},
title = {Point set surfaces },
booktitle = {IEEE Visualization 2001},
year = {2001},
pages = {21--28},
month = {October}
}
@INPROCEEDINGS{alexa00arap,
author = {Marc Alexa and Daniel Cohen-Or and David Levin},
title = {As-rigid-as-possible shape interpolation},
booktitle = {Proceedings of SIGGRAPH 2000},
year = {2000},
pages = {157--164},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{allen03shapespace,
author = {Brett Allen and Brian Curless and Zoran Popovi\'{c}},
title = {The space of human body shapes: reconstruction and parameterization
from range scans},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {587--594},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Alliez:2003:APR,
author = {Pierre Alliez and David Cohen-Steiner and Olivier Devillers and Bruno
L{\'{e}}vy and Mathieu Desbrun},
title = {Anisotropic Polygonal Remeshing},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {485--493},
number = {3},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Alliez:2001:VCE,
author = {Pierre Alliez and Mathieu Desbrun},
title = {Valence-Driven Connectivity Encoding for 3{D} Meshes},
journal = j-CGF,
year = {2001},
volume = {20},
pages = {480--489},
number = {3},
owner = {sorkine},
publisher = {Blackwell Publishers},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Alliez:SIG:2001,
author = {Pierre Alliez and Mathieu Desbrun},
title = {Progressive Compression for Lossless Transmission of Triangle Meshes},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2001},
pages = {198--205},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{ag-racm-03,
author = {Pierre Alliez and Craig Gotsman},
title = {Recent Advances in Compression of 3{D} Meshes},
booktitle = {Advances in Multiresolution for Geometric Modelling},
year = {2005},
editor = {N.A. Dodgson and M.S. Floater and M.A. Sabin},
pages = {3--26},
publisher = {Springer-Verlag},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Alliez02parallelogram,
author = {Pierre Alliez and Mathieu Isenburg},
title = {Compressing Polygon Mesh Geometry with Parallelogram Prediction},
booktitle = {Proceedings of Visualization},
year = {2002},
pages = {141--146},
address = {Washington, DC, USA},
publisher = {IEEE Computer Society},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{acdi-isr-03,
author = {Pierre Alliez and {\'E}ric Colin de Verdi{\`e}re and Olivier Devillers
and Martin Isenburg},
title = {Isotropic Surface Remeshing},
booktitle = p-SMI,
year = {2003},
pages = {49--58},
}
@ARTICLE{AlonSeymourThomas,
author = {N. Alon and P. D. Seymour and R. Thomas},
title = {A separator theorem for nonplanar graphs},
journal = {Journal of the American Mathematical Society},
year = {1990},
volume = {3},
pages = {801--808},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{AmaraD01,
author = {Amara, M. and Dabaghi, F.},
title = {An optimal {$C^0$} finite element algorithm for the 2{D} biharmonic
problem: theoretical analysis and numerical results},
journal = {Numer. Math.},
year = {2001},
volume = {90},
pages = {19--46},
number = {1},
coden = {NUMMA7},
fjournal = {Numerische Mathematik},
issn = {0029-599X},
mrclass = {65N30},
mrnumber = {MR1868761 (2002h:65172)},
mrreviewer = {Beny Neta},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{amdp:96,
author = {P. R. Amestoy and I. S. Duff and C. Puglisi},
title = {Multifrontal {QR} Factorization in a Multiprocessor Environment},
journal = {Numerical Linear Algebra with Applications},
year = {1996},
volume = {3},
pages = {275--300},
kwds = {sparse, prll},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{An:2008:OCE,
author = {An, Steven S. and Kim, Theodore and James, Doug L.},
title = {Optimizing cubature for efficient integration of subspace deformations},
journal = {ACM Trans. Graph.},
year = {2008},
volume = {27},
pages = {165:1--165:10},
month = {December},
acmid = {1409118},
address = {New York, NY, USA},
articleno = {165},
issn = {0730-0301},
issue = {5},
keywords = {dimensional model reduction, dynamic deformations, nonlinear solid
mechanics, quadrature, real-time simulation, reduced-order modeling,
subspace dynamics, subspace integration},
numpages = {10},
}
@INCOLLECTION{andersen17,
author = {E. D. Andersen and K. D. Andersen},
title = {The \textsc{mosek} interior point optimizer for linear programming:
an implementation of the homogeneous algorithm},
booktitle = {High Performance Optimization},
publisher = {Kluwer Academic Publishers},
year = {2000},
pages = {197--232}
}
@ARTICLE{angelidis06sweepers,
author = {Alexis Angelidis and Marie-Paule Cani and Geoff Wyvill and Scott
King},
title = {Swirling-sweepers: constant volume modeling},
journal = {Grap. Models},
year = {2006},
volume = {68},
pages = {324--332},
number = {4},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Angelidis02,
author = {Alexis Angelidis and Pauline Jepp and Marie-Paule Cani},
title = {Implicit Modeling with Skeleton Curves: Controlled Blending in Contact
Situations},
booktitle = p-SMI,
year = {2002},
pages = {137--144},
}
@UNPUBLISHED{C2-paper,
author = {Anonymous},
title = {Constructing surfaces of high continuity by blending.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{arnold2006dca1,
author = {Arnold, D.N. and Falk, R.S. and Winther, R.},
title = {{Differential complexes and stability of finite element methods I.
The de Rham complex}},
journal = {IMA Volumes in Mathematics and Its Applications},
year = {2006},
volume = {142},
pages = {23},
publisher = {Springer}
}
@ARTICLE{arnold2006dca2,
author = {Arnold, D.N. and Falk, R.S. and Winther, R.},
title = {{Differential complexes and stability of finite element methods II:
The elasticity complex}},
journal = {IMA Volumes in Mathematics and Its Applications},
year = {2006},
volume = {142},
pages = {47},
publisher = {Springer}
}
@MISC{Arnold:2000:QST,
author = {Douglas N. Arnold},
title = {Questions on Shell Theory},
howpublished = {Workshop on Elastic Shells: Modeling, Analysis, and Computation},
year = {2000},
note = {Mathematical Sciences Research Institute, Bekeley},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Arnold90,
author = {D. N. Arnold},
title = {Mixed finite element methods for elliptic problems},
journal = {Comput. Methods Appl. Mech. Eng.},
year = {1990},
volume = {82},
pages = {281--300},
number = {1-3},
address = {Lausanne, Switzerland, Switzerland},
issn = {0045-7825},
owner = {sorkine},
publisher = {Elsevier Sequoia S. A.},
timestamp = {2008.10.27}
}
@ARTICLE{ArnoldB85,
author = {Arnold, D. N. and Brezzi, F.},
title = {Mixed and nonconforming finite element methods: implementation, postprocessing
and error estimates},
journal = {RAIRO Mod\'el. Math. Anal. Num\'er.},
year = {1985},
volume = {19},
pages = {7--32},
number = {1},
fjournal = {RAIRO Mod\'elisation Math\'ematique et Analyse Num\'erique},
issn = {0764-583X},
mrclass = {65N30},
mrnumber = {MR813687 (87g:65126)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ascher:2003:MCG,
author = {Ascher, U. M. and Boxerman, E.},
title = {On the modified conjugate gradient method in cloth simulation},
journal = {Visual Computer},
year = {2003},
volume = {19},
pages = {526-531},
number = {7-8},
annotation = {The seminal paper on cloth simulation by Baraff and Witkin (1998)
presents a modified preconditioned conjugate gradient (MPCG) algorithm
for solving certain large, sparse systems of linear equations. These
arise when employing implicit time integration methods aimed at achieving
large step cloth simulation in the presence of constraints. This
paper improves the robustness and efficiency of this MPCG algorithm.
We prove convergence. For this, we recast the algorithm into a linear
algebra setting, identifying its filtering procedure as an orthogonal
projection. This leads not only to a convergence proof but also to
a correction in the initiation stage of the original algorithm that
improves its efficiency. We give an example to illustrate the performance
improvement offered by this correction.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ascher:1997:IER,
author = {Ascher, U. M. and Ruuth, S. J. and Spiteri, R. J.},
title = {Implicit-explicit Runge-Kutta methods for time-dependent partial
differential equations},
journal = {Applied Numerical Mathematics},
year = {1997},
volume = {25},
pages = {151-167},
number = {2-3},
annotation = {Implicit-explicit (IMEX) linear multistep time-discretization schemes
for partial differential equations have proved useful in many applications.
However, they tend to have undesirable time-step restrictions when
applied to convection-diffusion problems, unless diffusion strongly
dominates and an appropriate BDF-based scheme is selected (Ascher
et al., 1995). In this paper, we develop Runge-Kutta-based IMEX schemes
that have better stability regions than the best known IMEX multistep
schemes over a wide parameter range.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Asirvatham:2005:CSP,
author = {Asirvatham, A. and Praun, E. and Hoppe, H.},
title = {Consistent spherical parameterization},
journal = {Computational Science - ICCS 2005. 5th International Conference.
Proceedings, Part II (Lecture Notes in Computer Science Vol. 3515)},
year = {2005},
pages = {265--272},
abstract = {Many applications benefit from surface parameterization, including
texture mapping, morphing, remeshing, compression, object recognition,
and detail transfer, because processing is easier on the domain than
on the original irregular mesh. We present a method for simultaneously
parameterizing several genus-0 meshes possibly with boundaries onto
a common spherical domain, while ensuring that corresponding user-highlighted
features on each of the meshes map to the same domain locations.
We obtain visually smooth parameterizations without any cuts, and
the constraints enable us to directly associate semantically important
features such as animal limbs or facial detail. Our method is robust
and works well with either sparse or dense sets of constraints.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Attene2006,
author = {Marco Attene and Bianca Falcidieno and Michela Spagnuolo},
title = {Hierarchical Mesh Segmentation based on Fitting Primitives},
journal = {The Visual Computer},
year = {2006},
volume = {22},
pages = {181--193},
number = {3},
owner = {sorkine},
timestamp = {2008.10.16}
}
@ARTICLE{Attene2007,
author = {Marco Attene and Francesco Robbiano and Michela Spagnuolo and Bianca
Falcidieno},
title = {Semantic Annotation of 3D Surface Meshes based on Feature Characterization},
journal = {Lecture Notes in Computer Science},
year = {2007},
volume = {4816},
pages = {126--139},
owner = {sorkine},
timestamp = {2008.10.16}
}
@ARTICLE{au2007hai,
author = {Oscar Kin-Chung Au and Hongbo Fu and Chiew-Lan Tai and Daniel Cohen-Or},
title = {Handle-aware isolines for scalable shape editing},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {83},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
}
@TECHREPORT{Kin05,
author = {Oscar Kin-Chung Au and Chiew-Lan Tai and Hongbo Fu and Ligang Liu},
title = {Mesh editing with curvature flow {L}aplacian},
institution = {Hong Kong University of Science and Technology},
year = {2005},
number = {HKUST-CS05-10},
month = {July},
note = {Presented as a 2-page poster paper at the Symposium on Geometry Processing
2005},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{DualLaplacian06,
author = {Oscar Kin-Chung Au and Chiew-Lan Tai and Ligang Liu and Hongbo Fu},
title = {Dual {L}aplacian editing for meshes},
journal = {IEEE TVCG},
year = {2006},
volume = {12},
pages = {386--395},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INBOOK{AuricchioBL04,
chapter = {9},
title = {Encyclopedia of Computational Mechanics},
publisher = {Wiley},
year = {2004},
author = {F. Auricchio and F. Brezzi and C. Lovadina},
volume = {1},
chaptertitle = {Mixed Finite Element Methods},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Auricchio:1995:TTP,
author = {Auricchio, F. and Taylor, R. L.},
title = {A triangular thick plate finite element with an exact thin limit},
journal = {Finite Elements in Analysis and Design},
year = {1995},
volume = {19},
pages = {57},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Auricchio:1991:NTE,
author = {Auricchio, F. and Taylor, R. L.},
title = {3 node triangular elements based on Reissner-Mindlin plate theory},
year = {1991},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Mudbox,
author = {{Autodesk Inc.}},
title = {{M}udbox 2011},
month = {July},
year = {2010},
note = {http://www.autodesk.com/mudbox}
}
@MISC{AUTODIFF,
author = {{Autodiff.org}},
title = {{http://www.autodiff.org}},
year = {2002},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Axelsson94,
title = {Iterative Solution Methods},
publisher = {Cambridge University Press},
year = {1994},
author = {Owe Axelsson},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{bajaj03anisotropic,
author = {C. Bajaj and G. Xu},
title = {Anisotropic diffusion of subdivision surfaces and functions on surfaces},
journal = j-TOG,
year = {2003},
volume = {22:1},
pages = {4-32},
owner = {sorkine},
timestamp = {2008.10.27},
}
@ARTICLE{10.1109/IV.2001.942137,
author = {Chandrajit L. Bajaj and Guoliang Xu},
title = {Adaptive Fairing of Surface Meshes by Geometric Diffusion},
journal = {iv},
year = {2001},
volume = {00},
pages = {0731},
address = {Los Alamitos, CA, USA},
owner = {sorkine},
publisher = {IEEE Computer Society},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Balakrishnan:2000:SBI,
author = {Balakrishnan, R. and Hinckley, K.},
title = {Symmetric bimanual interaction},
booktitle = {CHI '00: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {2000},
pages = {33--40},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {The Hague, The Netherlands},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Balakrishnan:1999:EBC,
author = {Balakrishnan, R. and Kurtenbach, G.},
title = {Exploring Bimanual Camera Control and Object Manipulation in 3{D}
Graphics Interfaces},
booktitle = {CHI '99: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1999},
pages = {56--63},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {Pittsburgh, Pennsylvania, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{petsc-home-page,
author = {Satish Balay and Kris Buschelman and William D. Gropp and Dinesh
Kaushik and Matt Knepley and Lois Curfman McInnes and Barry F. Smith
and Hong Zhang},
title = {{PETSc} homepage},
note = {http://www.mcs.anl.gov/petsc},
year = {2001},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{balstor88,
author = {A. A. Ball and D. J. T. Storry},
title = {Conditions for Tangent Plane Continuity over Recursively Generated
{B}-Spline Surfaces},
journal = j-TOG,
year = {1988},
volume = {7},
pages = {83--102},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bar-Yehuda96,
author = {Reuven {Bar-Yehuda} and Craig Gotsman},
title = {Time/Space Tradeoffs for Polygon Mesh Rendering},
journal = j-TOG,
year = {1996},
volume = {15},
pages = {141--152},
number = {2},
month = apr,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Baraff:1998:LSC,
author = {Baraff, D. and Witkin, A.},
title = {Large steps in cloth simulation},
journal = {Computer Graphics. Proceedings. SIGGRAPH 98 Conference Proceedings},
year = {1998},
pages = {43-54},
abstract = {The bottleneck in most cloth simulation systems is that time steps
must be small to avoid numerical instability. The paper describes
a cloth simulation system that can stably take large time steps.
The simulation system couples a new technique for enforcing constraints
on individual cloth particles with an implicit integration method.
The simulator models cloth as a triangular mesh, with internal cloth
forces derived using a simple continuum formulation that supports
modeling operations such as local anisotropic stretch or compression;
a unified treatment of damping forces is included as well. The implicit
integration method generates a large, unbanded sparse linear system
at each time step which is solved using a modified conjugate gradient
method that simultaneously enforces particle constraints. The constraints
are always maintained exactly, independent of the number of conjugate
gradient iterations, which is typically small. The resulting simulation
system is significantly faster than previous accounts of cloth simulation
systems in the literature.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Baraff:2003:UC,
author = {Baraff, D. and Witkin, A. and Kass, M.},
title = {Untangling cloth},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {862-870},
number = {3},
annotation = {Deficient cloth-to-cloth collision response is the most serious shortcoming
of most cloth simulation systems. Past approaches to cloth-cloth
collision have used history to decide whether nearby cloth regions
have interpenetrated. The biggest pitfall of history-based methods
is that an error anywhere along the way can give rise to persistent
tangles. This is a particularly serious issue for production character
animation, because characters' bodies routinely self-intersect, for
instance in the bend of an elbow or knee, or where the arm or hand
rests against the body. Cloth that becomes pinched in these regions
is often forced into jagged self-intersections that defeat history-based
methods, leaving a tangled mess when the body parts separate. We
describe a history-free cloth collision response algorithm based
on global intersection analysis of cloth meshes at each simulation
step. The algorithm resolves tangles that arise during pinching as
soon as the surrounding geometry permits, and also resolves tangled
initial conditions. The ability to untangle cloth after pinching
is not sufficient, because standard cloth-solid collision algorithms
handle pinches so poorly that they often give rise to visible flutters
and other simulation artifacts during the pinch. As a companion to
the global intersection analysis method, we present a cloth-solid
collision algorithm called collision flypapering, that eliminates
these artifacts. The two algorithms presented have been used together
extensively and successfully in a production animation environment.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Baraff:1998:LSI,
author = {David Baraff and Andrew P. Witkin},
title = {Large Steps in Cloth Simulation},
booktitle = {Proceedings of SIGGRAPH 98},
year = {1998},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {43--54},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Baran:2007:ARA,
author = {Ilya Baran and Jovan Popovi{\'{c}}},
title = {Automatic Rigging and Animation of 3{D} Characters},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {72:1--72:8},
number = {3}
}
@ARTICLE{Barbic:2005:RTSI,
author = {Jernej Barbi\v{c} and Doug L. James},
title = {Real-Time Subspace Integration for {S}t. {V}enant-{K}irchhoff Deformable
Models},
journal = {ACM Trans. on Graph.},
year = {2005},
volume = {24},
pages = {982--990},
number = {3},
month = aug
}
@MISC{Barnes:1977:FFA,
author = {Barnes, M. R.},
title = {Form finding and analysis of tension space structure by dynamic relaxation},
year = {1977},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Templates,
title = {Templates for the Solution of Linear Systems: Building Blocks for
Iterative Methods},
publisher = {SIAM},
year = {1993},
author = {R.~Barret and M.~Berry and T.~Chan and J.~Demmel andJ.~Donato and
J.~Dongarra and V.~Eijkhout and R.~Pozo and C.~Romine and H.~van
der Vorst},
address = {Philadeplphia, PA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Barsky:1988:CGG,
title = {Computer Graphics and Geometric Modeling Using Beta-splines},
publisher = {Springer Verlag},
year = {1988},
author = {B. Barsky},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Barthe:2004:SST,
author = {Barthe, L. and Kobbelt, L.},
title = {Subdivision scheme tuning around extraordinary vertices},
journal = {Computer-Aided Geometric Design},
year = {2004},
volume = {21},
pages = {561-583},
number = {6},
abstract = {In this paper we extend the standard method to derive and optimize
subdivision rules in the vicinity of extraordinary vertices (EV).
Starting from a given set of rules for regular control meshes, we
tune the extraordinary rules (ER) such that the necessary conditions
for C /sup 1/ continuity are satisfied along with as many necessary
C/sup 2/ conditions as possible. As usually done, our approach sets
up the general configuration around an EV by exploiting rotational
symmetry and reformulating the subdivision rules in terms of the
subdivision matrix' eigencomponents. The degrees of freedom are then
successively eliminated by imposing new constraints which allows
us, e.g., to improve the curvature behavior around EVs. The method
is flexible enough to simultaneously optimize several subdivision
rules, i.e., not only the one for the EV itself but also the rules
for its direct neighbors. Moreover, it allows us to prescribe the
stencils for the ERs and naturally blends them with the regular rules
that are applied away from the EV. All the constraints are combined
in an optimization scheme that searches in the space of feasible
subdivision schemes for a candidate which satisfies some necessary
conditions exactly and other conditions approximately. The relative
weighting of the constraints allows us to tune the properties of
the subdivision scheme according to application specific requirements.
We demonstrate our method by tuning the ERs for the well-known Loop
scheme and by deriving ERs for a radic 3-type scheme based on a 6-direction
Box-spline.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bathe:1975:FEF,
author = {Bathe, K. J. and Ramm, E. and Wilson, E. L.},
title = {Finite element formulation for large deformation dynamic analysis},
journal = {International Journal for Numerical Methods in Engineering},
year = {1975},
volume = {9},
pages = {353},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Bathe1995,
title = {Finite Element Procedures},
publisher = {Prentice Hall},
year = {1995},
author = {Klaus-Jurgen Bathe},
owner = {mario},
timestamp = {2006.10.27}
}
@BOOK{Batoz:1992:MSP,
title = {Mode`llisation des structures par e`le`ments fins},
publisher = {Hermes},
year = {1992},
author = {Batoz, J. L.},
note = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Batoz:1980:STN,
author = {Batoz, J. L. and Bathe, K. J. and Ho, L. W.},
title = {A study of three-node triangular plate bending elements},
journal = {International Journal for Numerical Methods in Engineering},
year = {1980},
volume = {15},
pages = {1771},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Batoz:1992:STR,
author = {Batoz, J. L. and Katili, I.},
title = {On a simple triangular Reissner-Mindlin plate element based on incompatible
modes and discrete constraints},
journal = {International Journal for Numerical Methods in Engineering},
year = {1992},
volume = {26},
pages = {1603},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Batoz:1989:DST,
author = {Batoz, J. L. and Lardeur, P.},
title = {A discrete shear triangular nine d.o.f. element for the analysis
of thick to very thin plates},
journal = {International Journal for Numerical Methods in Engineering},
year = {1989},
volume = {29},
pages = {1595},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{bebendorf2003ehm,
author = {Bebendorf, M. and Hackbusch, W.},
title = {{Existence of H-matrix approximants to the inverse FE-matrix of elliptic
operators with L8-coefficients}},
journal = {Numerische Mathematik},
year = {2003},
volume = {95},
pages = {1--28},
number = {1},
publisher = {Springer}
}
@ARTICLE{Bechmann94,
author = {Dominique Bechmann},
title = {Space deformation models survey.},
journal = {Computers {\&} Graphics},
year = {1994},
volume = {18},
pages = {571--586},
number = {4},
bibsource = {DBLP, http://dblp.uni-trier.de},
ee = {http://dx.doi.org/10.1016/0097-8493(94)90071-X},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Beier:1994:HLA,
author = {Beier, K. P. and Yifan, Chen},
title = {Highlight-line algorithm for realtime surface-quality assessment},
journal = {Computer Aided Design},
year = {1994},
volume = {26},
pages = {268-277},
number = {4},
abstract = {A new method of surface-quality assessment is presented. The model
of highlight lines is introduced, and its properties and applications
in surface-quality evaluation are demonstrated. The differential
equation of the highlight-line model is derived, and the difficulty
involved in seeking its analytical solutions is discussed. Alternatively,
the creation of highlight lines is formulated as a surface-plane
intersection problem, and solved using surface-contouring techniques.
A fast highlight-line algorithm is developed utilizing an efficient
traced contouring technique. The algorithm is robust, fully automatic,
and, therefore, well suited for realtime quality-assessment tasks.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Beier:1992:FBI,
author = {Beier, T. and Neely, S.},
title = {Feature-based image metamorphosis},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {1992},
pages = {35--42},
abstract = {A new technique is presented for the metamorphosis of one digital
image into another. The approach gives the animator high-level control
of the visual effect by providing natural feature-based specification
and interaction. When used effectively, this technique can give the
illusion that the photographed or computer generated subjects are
transforming in a fluid, surrealistic, and often dramatic way. Comparisons
with existing methods are drawn, and the advantages and disadvantages
of each are examined. The new method is then extended to accommodate
keyframed transformations between image sequences for motion image
work. Several examples are illustrated with resulting images.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Belytschko:1985:IAN,
author = {Belytschko, T. and Liu, W. K. and Lam, D.},
title = {Implementation and application of a 9-node Lagrangian shell element
with spurios mode control},
journal = {Computers and Structures},
year = {1985},
volume = {20},
pages = {121},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ben-Chen:2009:VHM,
author = {Mirela Ben-Chen and Ofir Weber and Craig Gotsman},
title = {Variational Harmonic Maps for Space Deformation},
journal = j-TOG,
year = {2009},
volume = {28},
pages = {34:1--34:11},
number = {3}
}
@ARTICLE{BenchenGotsman2003PCA,
author = {Mirela {Ben-Chen} and Craig Gotsman},
title = {On the optimality of spectral compression of mesh data},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {60--80},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{MeshForgingKlein03,
author = {G. H. Bendels and R. Klein},
title = {Mesh forging: editing of 3{D}-meshes using implicitly defined occluders},
booktitle = p-SGP,
year = {2003},
pages = {207--217},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Benko01,
author = {Benk{\"o}, P. and Martin, R. R. and V{\'a}rady, T.},
title = {Algorithms for reverse engineering boundary representation models},
journal = {Computer Aided Design},
year = {2001},
volume = {33},
pages = {839--851},
number = {11},
owner = {sorkine},
timestamp = {2008.10.16}
}
@ARTICLE{Dobrindt95,
author = {M. De Berg and K. Dobrindt},
title = {On Levels of Detail in Terrains},
journal = {Graphical Models and Image Processing},
year = {1998},
volume = {60},
pages = {1--12},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Bergou2006,
author = {Miklos Bergou and Max Wardetzky and David Harmon and Denis Zorin
and Eitan Grinspun},
title = {A Quadratic Bending Model for Inextensible Surfaces},
booktitle = p-SGP,
year = {2006},
pages = {227--230},
owner = {mario},
timestamp = {2006.11.05}
}
@INPROCEEDINGS{CG_0009,
author = {Miklos Bergou and Max Wardetzky and David Harmon and Denis Zorin
and Eitan Grinspun},
title = {{A} {Q}uadratic {B}ending {M}odel for {I}nextensible {S}urfaces},
booktitle = p-SGP,
year = {2006},
pages = {227-230},
month = {Jun}
}
@UNPUBLISHED{TR_IBM,
author = {Miklos Bergou and Max Wardetzky and David Harmon and Denis Zorin
and Eitan Grinspun},
title = {Discrete Quadratic Curvature Energies},
note = {Tech. Report, Columbia University},
year = {2006},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{BernGiHeNgTo01,
author = {Marshall Bern and John R. Gilbert and Bruce Hendrickson and Nhat
Nguyen and Sivan Toledo},
title = {Support-Graph Preconditioners},
journal = {SIAM Journal on Matrix Analysis and Applications},
year = {2006},
volume = {27},
pages = {930--951},
number = {4},
address = {Philadelphia, PA, USA},
owner = {sorkine},
publisher = {Society for Industrial and Applied Mathematics},
timestamp = {2008.10.27}
}
@ARTICLE{Bhat:2003:ECS,
author = {Bhat, K. S. and Twigg, C. D. and Hodgins, J. K. and Khosla, P. K.
and Popovic, Z. and Seitz, S. M.},
title = {Estimating cloth simulation parameters from video},
journal = {ACM SIGGRAPH/Eurographics Symposium on Computer Animation},
year = {2003},
pages = {37-51},
annotation = {Cloth simulations are notoriously difficult to tune due to the many
parameters that must be adjusted to achieve the look of a particular
fabric. In this paper, we present an algorithm for estimating the
parameters of a cloth simulation from video data of real fabric.
A perceptually motivated metric based on matching between folds is
used to compare video of real cloth with simulation. This metric
compares two video sequences of cloth and returns a number that measures
the differences in their folds. Simulated annealing is used to minimize
the frame by frame error between the metric for a given simulation
and the real-world footage. To estimate all the cloth parameters,
we identify simple static and dynamic calibration experiments that
use small swatches of the fabric. To demonstrate the power of this
approach, we use our algorithm to find the parameters for four different
fabrics. We show the match between the video footage and simulated
motion on the calibration experiments, on new video sequences for
the swatches, and on a simulation of a full skirt.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Bier:1993:TML,
author = {Bier, E. A. and Stone, M. C. and Pier, K. and Buxton, W. and DeRose,
T. D.},
title = {Toolglass and magic lenses: the see-through interface},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {1993},
pages = {73--80},
--address = {New York, NY, USA},
--publisher = {ACM Press},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Biermann:2001:ABO,
author = {Henning Biermann and Daniel Kristjansson and Denis Zorin},
title = {Approximate Boolean Operations on Free-Form Solids},
journal = {Proceedings of SIGGRAPH 2001},
year = {2001},
pages = {185--194},
month = {August},
editor = {Eugene Fiume},
keywords = {Subdivision surfaces, Multiresolution surfaces, Geometric modeling},
series = {Computer Graphics Proceedings, Annual Conference Series}
}
@INPROCEEDINGS{Biermann:2000:PSS,
author = {Henning Biermann and Adi Levin and Denis Zorin},
title = {Piecewise Smooth Subdivision Surfaces with Normal Control},
booktitle = {Proceedings of SIGGRAPH 2000},
year = {2000},
pages = {113--120},
month = jul,
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Biermann02,
author = {Henning Biermann and Ioana Martin and Fausto Bernardini and Denis
Zorin},
title = {Cut-and-paste editing of multiresolution surfaces},
booktitle = {Proc.\ ACM SIGGRAPH},
year = {2002},
pages = {312--321},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Biermann:2001:SFM,
author = {Henning Biermann and Ioana Martin and Denis Zorin and Fausto Bernardini},
title = {Sharp features on multiresolution subdivision surfaces},
booktitle = {Proceedings of Pacific Graphics 2001 Conference},
year = {2001}
}
@ARTICLE{biros-ying-zorin-03a,
author = {George Biros and Lexing Ying and Denis Zorin},
title = {A fast solver for the {S}tokes equations with distributed forces
in complex geometries},
journal = {Journal of Computational Physics},
year = {2003},
volume = {193},
pages = {317--348},
number = {1}
}
@INPROCEEDINGS{biros-ying-zorin-02,
author = {George Biros and Lexing Ying and Denis Zorin},
title = {The Embedded Boundary Integral Method for the Incompressible {N}avier-{S}tokes
Equations},
booktitle = {Proceedings of the International Association for Boundary Element
Methods 2002 Symposium, CDROM},
year = {2002},
address = {University of Texas at Austin, Austin TX},
month = {May 28--30}
}
@TECHREPORT{biros-ying-zorin-02a,
author = {George Biros and Lexing Ying and Denis Zorin},
title = {The Embedded Boundary Integral Method for the Stokes Equations},
institution = {Courant Institute, New York University},
year = {2002},
number = {TR2003-837},
note = {{\footnotesize \tt http://www.cs.nyu.edu/csweb/Research/TechReports/TR2003-837/TR2003-837.pdf}}
}
@TECHREPORT{biros-ying-zorin-02b,
author = {George Biros and Lexing Ying and Denis Zorin},
title = {The Embedded Boundary Integral Method for the Unsteady Incompressible
Navier-Stokes Equations},
institution = {Courant Institute, New York University},
year = {2002},
number = {TR2003-838},
note = {{\footnotesize \tt http://www.cs.nyu.edu/csweb/Research/TechReports/TR2003-838/TR2003-838.pdf}}
}
@ARTICLE{Bischoff:2005:SPC,
author = {Bischoff, S. and Kobbelt, L.},
title = {Structure preserving CAD model repair},
journal = j-CGF,
year = {2005},
volume = {24},
pages = {527-536},
number = {3},
abstract = {There are two major approaches for converting a tessellated CAD model
that contains inconsistencies like cracks or intersections into a
manifold and closed triangle mesh. Surface oriented algorithms try
to fix the inconsistencies by perturbing the input only slightly,
but they often cannot handle special cases. Volumetric algorithms
on the other hand produce guaranteed manifold meshes but mostly destroy
the structure of the input tessellation due to global resampling.
In this paper we combine the advantages of both approaches: We exploit
the topological simplicity of a voxel grid to reconstruct a cleaned
up surface in the vicinity of intersections and cracks, but keep
the input tessellation in regions that are away from these inconsistencies.
We are thus able to preserve any characteristic structure (i.e. iso-parameter
or curvature lines) that might be present in the input tessellation.
Our algorithm closes gaps up to a user-defined maximum diameter,
resolves intersections, handles incompatible patch orientations and
produces a feature-sensitive, manifold output that stays within a
prescribed error-tolerance to the input model.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bischoff:2003:SVT,
author = {Bischoff, S. and Kobbelt, L.},
title = {Sub-voxel topology control for level-set surfaces},
journal = j-CGF,
year = {2003},
volume = {22},
pages = {273-280},
number = {3},
abstract = {Active contour models are an efficient, accurate, and robust tool
for the segmentation of 2D and 3D image data. In particular, geometric
deformable models (GDM) that represent an active contour as the level
set of an implicit function have proven to be very effective. GDMs,
however, do not provide any topology control, i.e. contours may merge
or split arbitrarily and hence change the genus of the reconstructed
surface. This behavior is inadequate in settings like the segmentation
of organic tissue or other objects whose genus is known beforehand.
We describe a novel method to overcome this limitation while still
preserving the favorable properties of the GDM setup. We achieve
this by adding (sparse) topological information to the volume representation
at locations where it is necessary to locally resolve topological
ambiguities. Since the sparse topology information is attached to
the edges of the voxel grid, we can reconstruct the interfaces where
the deformable surface touches itself at subvoxel accuracy. We also
demonstrate the efficiency and robustness of our method.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bischoff:2002:EDM,
author = {Bischoff, S. and Kobbelt, L.},
title = {Ellipsoid decomposition of 3D-models},
journal = {Proceedings First International Symposium on 3D Data Processing Visualization
and Transmission},
year = {2002},
pages = {480-488},
abstract = {In this paper we present a simple technique to approximate the volume
enclosed by a given triangle mesh with a set of overlapping ellipsoids.
This type of geometry representation allows us to approximately reconstruct
3D-shapes from a very small amount of information being transmitted.
The two central questions that we address are: how can we compute
optimal fitting ellipsoids that lie in the interior of a given triangle
mesh and how do we select the most significant (least redundant)
subset from a huge number of candidate ellipsoids. Our major motivation
for computing ellipsoid decompositions is the robust transmission
of geometric objects where the receiver can reconstruct the 3D-shape
even if part of the data gets lost during transmission.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bischoff:2002:SGD,
author = {Bischoff, S. and Kobbelt, L.},
title = {Streaming 3D geometry data over lossy communication channels},
journal = {Proceedings 2002 IEEE International Conference on Multimedia and
Expo (Cat. No.02TH8604)},
year = {2002},
pages = {361-4 vol.1},
abstract = {In this paper we propose a progressive 3D geometry transmission technique
that is robust with respect to data loss. In a preprocessing step
we decompose a given polygon mesh model into a set of overlapping
ellipsoids, representing the coarse shape of the model, and a stream
of sample points, representing its fine detail. On the client-side,
we derive a coarse approximation of the model from the ellipsoid
decomposition and then re-insert the sample points to reconstruct
the fine detail. The overlapping ellipsoids as well as the sample
points represent independent pieces of geometric information, hence
partial data loss can be tolerated by our reconstruction algorithm
and will only lead to a gradual degradation of the reconstruction
quality. We present a transmission scheme that is especially well-suited
for geometry broadcasting where we exploit the fact that the order
of the sample points can be arbitrarily permuted.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bischoff:2002:TRB,
author = {Bischoff, S. and Kobbelt, L.},
title = {Towards robust broadcasting of geometry data},
journal = {Computers \& Graphics},
year = {2002},
volume = {26},
pages = {665-675},
number = {5},
abstract = {We present new algorithms for the robust transmission of geometric
datasets, i.e. transmission which allows the receiver to recover
(an approximation of) the original geometric object even if parts
of the data get lost on the way. These algorithms can be considered
as hinted point cloud triangulation schemes since the general manifold
reconstruction problem is simplified by adding tags to the vertices
and by providing a coarse base mesh which determines the global surface
topology. Robust transmission techniques exploit the geometric coherence
of the data and do not require redundant transmission protocols on
lower software layers. As an example application scenario, we describe
the teletext-like broadcasting of three-dimensional (3D) models.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bischoff:2004:PFA,
author = {Bischoff, S. and Kobbelt, L. P.},
title = {Parameterization-free active contour models with topology control},
journal = {Visual Computer},
year = {2004},
volume = {20},
pages = {217-228},
number = {4},
abstract = {We present a novel approach for representing and evolving deformable
active contours by restricting the movement of the contour vertices
to the grid lines of a uniform lattice. This restriction implicitly
controls the (re)parameterization of the contour and hence makes
it possible to employ parameterization-independent evolution rules.
Moreover, the underlying uniform grid makes self-collision detection
very efficient. Our contour model is also able to perform topology
changes, but - more importantly - it can detect and handle self-collisions
at subpixel precision. In applications where topology changes are
not appropriate, we generate contours that touch themselves without
any gaps or self-intersections.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bischoff:2002:IRT,
author = {Bischoff, S. and Kobbelt, L. P.},
title = {Isosurface reconstruction with topology control},
journal = {Proceedings 10th Pacific Conference on Computer Graphics and Applications},
year = {2002},
pages = {246-255},
abstract = {Extracting isosurfaces from volumetric datasets is an essential step
for indirect volume rendering algorithms. For physically measured
data, e.g. in medical imaging applications, one often introduces
topological errors such as small handles that stem from measurement
inaccuracy and cavities that are generated by tight folds of an organ.
During isosurface extraction these measurement errors result in a
surface whose genus is much higher than that of the actual surface.
In many cases, however, the topological type of the object under
consideration is known beforehand, e.g., the cortex of a human brain
is always homeomorphic to a sphere. By using topology preserving
morphological operators we can exploit this knowledge to gradually
dilate an initial set of voxels with correct topology until it fits
the target isosurface. This approach avoids the formation of handles
and cavities and guarantees a topologically correct reconstruction
of the object's surface.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{bjor:76,
author = {{\AA}. Bj{\"o}rck},
title = {Methods for Sparse Least Squares Problems},
booktitle = {Sparse Matrix Computations},
year = {1976},
editor = {J.R. Bunch and D. J. Rose},
pages = {177--199},
publisher = {Academic Press, New York},
kwds = {sparse, survey},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{bjor:79,
author = {{\AA}. Bj{\"o}rck},
title = {{SSOR} Preconditioning Methods for Sparse Least Squares Problems},
booktitle = {Proceedings of the Computer Science and Statistics 12th Annual Symposium
on the Interface},
year = {1979},
editor = {J. F. Gentleman},
pages = {21--25},
publisher = {University of Waterloo, Canada},
kwds = {iter, precond},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{bjor96,
title = {Numerical Methods for Least Squares Problems},
publisher = {SIAM},
year = {1996},
author = {{\AA}. Bj{\"o}rck},
address = {Philadelphia},
kwds = {survey},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{bjelf:79,
author = {{\AA}. Bj{\"o}rck and T. Elfving},
title = {Accelerated Projection Methods for Computing Pseudoinverse Solutions
of Systems of Linear Equations},
journal = {BIT Numerical Mathematics},
year = {1979},
volume = {19},
pages = {145--163},
number = {2},
kwds = {ginv, iter, prll},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{bjdu:80,
author = {{\AA}. {Bj{\"o}rck} and I. S. Duff},
title = {A Direct Method for the Solution of Sparse Linear Least Squares Problems},
journal = {Linear Algebra Appl.},
year = {1980},
volume = {34},
pages = {43--67},
kwds = {ne, lud, sparse}
}
@INPROCEEDINGS{blackston-suel-97,
author = {David Blackston and Torsten Suel},
title = {Hightly Protable and Efficient Implementations of Parallel Adaptive
N-body Methods},
booktitle = {Proceedings of Supercomputing},
year = {1997},
series = {The SCxy Conference series},
address = {Baltimore, Maryland},
month = {November},
organization = {ACM/IEEE},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Blair:1994:CA,
title = {Cartoon Animation},
publisher = {Walter Foster Publishing, Inc.},
year = {1994},
author = {Blair, Preston},
pages = {118--121},
address = {Irvine, CA, USA},
}
@INCOLLECTION{blelloch-94,
author = {Guy Blelloch and Girija Narlikar},
title = {A Practical Comparison of $N$-Body Algorithms},
booktitle = {Parallel Algorithms},
publisher = {American Mathematical Society},
year = {1997},
series = {Series in Discrete Mathematics and Theoretical Computer
Science},
abstract = {Comparison between Barnes-Hut, FMM and hybrid implementations. For
these problems FMM is the fastest.
This work compares three algorithms for the three dimensional N-body
problem, the Barnes-Hut algorithm, Greengard's Fast Multipole
Method(FMM), and the Parallel Multipole Tree Algorithm (PMTA) to
determine which of the algorithms performs best in practice. Although
FMM has a better asymptotic running time (O(N) instead of O(N log
N)
for uniform distributions), the algorithm is more complicated and
it
is not immediately clear above what values of N it performs better
in
practice. We studied the dependence of accuracy on the variable
parameters theta, p and alpha, and then compared the floating point
operation counts of the three algorithms at similar levels of
accuracy, for both charged and uncharged random distributions. At
a
high level of accuracy (RMS-error ~= 10^-5), the FMM did the least
number of operations for N > 10^4, assuming both charged and uncharged
distributions of points. At a lower level of accuracy, (RMS-error
~=
10^-3) for uncharged distributions, the FMM did not outperform
Barnes-Hut even for N > 10^8. For charged distributions of particles,
both the FMM and PMTA were comparable at low accuracy. The algorithms
were implemented in the parallel language NESL.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Blinn:1982:AGO,
author = {James F. Blinn},
title = {A Generalization of Algebraic Surface Drawing},
journal = j-TOG,
year = {1982},
volume = {1},
pages = {235--256},
number = {3}
}
@ARTICLE{BloorW90,
author = {M. I. G. Bloor and M. J. Wilson},
title = {Using partial differential equations to generate free-form surfaces},
journal = {Computer Aided Design},
year = {1990},
volume = {22},
pages = {202--212},
number = {4},
address = {Newton, MA, USA},
issn = {0010-4485},
owner = {sorkine},
publisher = {Butterworth-Heinemann},
timestamp = {2008.10.27}
}
@ARTICLE{BloorW89,
author = {M. I. G. Bloor and M. J. Wilson},
title = {Generating blend surfaces using partial differential equations},
journal = {Computer Aided Design},
year = {1989},
volume = {21},
pages = {165--171},
number = {3},
address = {Newton, MA, USA},
issn = {0010-4485},
owner = {sorkine},
publisher = {Butterworth-Heinemann},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{bobenko05willmore,
author = {Alexander I. Bobenko and Peter Schr\"{o}der},
title = {Discrete {W}illmore Flow},
booktitle = p-SGP,
year = {2005},
pages = {101--110},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{bo-go-gi01,
author = {Alexander Bogomjakov and Craig Gotsman},
title = {Universal Rendering Sequences for Transparent Vertex Caching of Progressive
Meshes},
booktitle = {Proceedings of Graphics Interface},
year = {2001},
pages = {81--90},
address = {Toronto, Ont., Canada, Canada},
month = {June},
publisher = {Canadian Information Processing Society},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bohl:1997:DBP,
author = {Bohl, H. and Reif, U.},
title = {Degenerate {B}\'ezier patches with continuous curvature},
journal = {Comput. Aided Geom. Design},
year = {1997},
volume = {14},
pages = {749--761},
number = {8},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bohl:DBP:1997,
author = {H. Bohl and U. Reif},
title = {Degenerate B\'ezier patches with continuous curvature},
journal = {Comput. Aided Geom. Des.},
year = {1997},
volume = {14},
pages = {749--761},
number = {8},
address = {Amsterdam, The Netherlands, The Netherlands},
issn = {0167-8396},
owner = {sorkine},
publisher = {Elsevier Science Publishers B. V.},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Boier:2004:DPC,
author = {Ioana Boier-Martin and Denis Zorin},
title = {Differentiable parameterization of Catmull-Clark subdivision surfaces},
booktitle = {SGP '04: Proceedings of the 2004 Eurographics/ACM SIGGRAPH symposium
on Geometry processing},
year = {2004},
pages = {155--164},
location = {Nice, France},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{BomanChHeTo01,
author = {Erik G. Boman and Doron Chen and Bruce Hendrickson and Sivan Toledo},
title = {Maximum-weight-basis preconditioners},
journal = {Numerical Linear Algebra with Applications},
year = {2004},
volume = {11},
pages = {695--721},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{BomanHe2001,
author = {Erik~G. Boman and Bruce Hendrickson},
title = {Support theory for preconditioning},
journal = {SIAM Journal on Matrix Analysis and Applications},
year = {2003},
volume = {25},
pages = {694--717},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{bm-gta-76,
title = {Graph Theory with Applications},
publisher = {Macmillan},
year = {1976},
author = {J. A. Bondy and U. S. R. Murty},
address = {London},
comments = {Also attributed to North-Holland, New York, NY},
keywords = {graph drawing},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Boor:1978:PGS,
title = {A Practical Guide to Splines},
publisher = {Springer},
year = {1978},
author = {C. de Boor},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{borm:h,
author = {Borm, S. and Grasedyck, L. and Hackbusch, W.},
title = {{HLib 1.3, 2004}}
}
@INPROCEEDINGS{Borosan:2010,
author = {P\'eter Boros\'an and Reid Howard and Shaoting Zhang and Andrew Nealen
},
title = {{Hybrid Mesh Editing}},
year = {2010},
editor = {H. P. A. Lensch and S. Seipel},
pages = {41-44},
address = {Norrk\"oping, Sweden},
publisher = {Eurographics Association},
issn = {1017-4656},
}
@ARTICLE{Borrel:1994:SCD,
author = {Paul Borrel and Ari Rappoport},
title = {Simple Constrained Deformations for Geometric Modeling and Interactive
Design},
journal = j-TOG,
year = {1994},
volume = {13},
pages = {137--155},
number = {2},
month = apr,
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{botsch05phd,
title = {High Quality Surface Generation and Efficient Multiresolution Editing
Based on Triangle Meshes},
publisher = {Shaker Verlag Aachen},
year = {2005},
author = {Mario Botsch},
note = {PhD Thesis, RWTH Aachen},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{BotschBK05,
author = {Mario Botsch and David Bommes and Leif Kobbelt},
title = {Efficient Linear System Solvers for Mesh Processing},
journal = {{IMA} Mathematics of Surfaces {XI}, Lecture Notes in Computer Science},
year = {2005},
volume = {3604},
pages = {62--83}
}
@ARTICLE{Botsch:2004:GBT,
author = {Botsch, M. and Bommes, D. and Vogel, C. and Kobbelt, L.},
title = {GPU-based tolerance volumes for mesh processing},
journal = {Proceedings. 12th Pacific Conference on Computer Graphics and Applications},
year = {2004},
pages = {237-243},
abstract = {In an increasing number of applications triangle meshes represent
a flexible and efficient alternative to traditional NURBS-based surface
representations. Especially in engineering applications it is crucial
to guarantee that a prescribed approximation tolerance to a given
reference geometry is respected for any combination of geometric
algorithms that are applied when processing a triangle mesh. We propose
a simple and generic method for computing the distance of a given
polygonal mesh to the reference surface, based on a linear approximation
of its signed distance field. Exploiting the hardware acceleration
of modern GPUs allows us to perform up to 3M triangle checks per
second, enabling real-time distance evaluations even for complex
geometries. An additional feature of our approach is the accurate
high-quality distance visualization of dynamically changing meshes
at a rate of 15M triangles per second. Due to its generality, the
presented approach can be used to enhance any mesh processing method
by global error control, guaranteeing the resulting mesh to stay
within a prescribed error tolerance. The application examples that
we present include mesh decimation, mesh smoothing and freeform mesh
deformation.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Botsch:2005:HQS,
author = {Botsch, M. and Hornung, A. and Zwicker, M. and Kobbelt, L.},
title = {High-quality surface splatting on today's GPUs},
journal = {Point-Based Graphics 2005 (IEEE Cat. No. 05EX1159)},
year = {2005},
pages = {17-141},
abstract = {Point-based geometries evolved into a valuable alternative to surface
representations based on polygonal meshes, because of their conceptual
simplicity and superior flexibility. Elliptical surface splats were
shown to allow for high-quality anti-aliased rendering by sophisticated
EWA filtering. Since the publication of the original software-based
EWA splatting, several authors tried to map this technique to the
GPU in order to exploit hardware acceleration. Due to the lacking
support for splat primitives, these methods always have to find a
trade-off between rendering quality and rendering performance. In
this paper, we discuss the capabilities of today's GPUs for hardware-accelerated
surface splatting. We present an approach that achieves a quality
comparable to the original EWA splatting at a rate of more than 20M
elliptical splats per second. In contrast to previous GPU renderers,
our method provides per-pixel Phong shading even for dynamically
changing geometries and high-quality anti-aliasing by employing a
screen-space pre-filter in addition to the object-space reconstruction
filter. The use of deferred shading techniques effectively avoids
unnecessary shader computations and additionally provides a clear
separation between the rasterization and the shading of elliptical
splats, which considerably simplifies the development of custom shaders.
We demonstrate quality, efficiency, and flexibility of our approach
by showing several shaders on a range of models.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Botsch:2005:RTS,
author = {Botsch, M. and Kobbelt, L.},
title = {Real-time shape editing using radial basis functions},
journal = j-CGF,
year = {2005},
volume = {24},
pages = {611-621},
number = {3},
abstract = {Current surface-based methods for interactive freeform editing of
high resolution 3D models are very powerful, but at the same time
require a certain minimum tessellation or sampling quality in order
to guarantee sufficient robustness. In contrast to this, space deformation
techniques do not depend on the underlying surface representation
and hence are affected neither by its complexity nor by its quality
aspects. However, while analogously to surface-based methods high
quality deformations can be derived from variational optimization,
the major drawback lies in the computation and evaluation, which
is considerably more expensive for volumetric space deformations.
In this paper we present techniques which allow us to use triharmonic
radial basis functions for real-time freeform shape editing. An incremental
least-squares method enables us to approximately solve the involved
linear systems in a robust and efficient manner and by precompiling
a special set of deformation basis functions we are able to significantly
reduce the per-frame costs. Moreover, evaluating these linear basis
functions on the GPU finally allows us to deform highly complex polygon
meshes or point-based models at a rate of 30M vertices or 13M splats
per second, respectively.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Botsch:2004:AIF,
author = {Mario Botsch and Leif Kobbelt},
title = {An intuitive framework for real-time freeform modeling},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {630--634},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{BotschKobbelt04,
author = {Mario Botsch and Leif Kobbelt},
title = {A Remeshing Approach to Multiresolution Modeling},
booktitle = p-SGP,
year = {2004},
pages = {189--196},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Botsch2003,
author = {Mario Botsch and Leif Kobbelt},
title = {Multiresolution surface representation based on displacement volumes},
journal = j-CGF,
year = {2003},
volume = {22},
pages = {483--491},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Botsch:2003:HQP,
author = {Botsch, M. and Kobbelt, L.},
title = {High-quality point-based rendering on modern GPUs},
journal = {Proceedings 11th Pacific Conference on Computer Graphics and Applications},
year = {2003},
pages = {335-343},
abstract = {In the last years, point-based rendering has been shown to offer the
potential to outperform traditional triangle based rendering both
in speed and visual quality when it comes to processing highly complex
models. Existing surface splatting techniques achieve superior visual
quality by proper filtering but they are still limited in rendering
speed. On the other hand the increasing availability and programmability
of graphics hardware lead to the development of very efficient hardware-accelerated
rendering methods. However, since no filtered splats are used, these
approaches trade visual quality for rendering speed. In this paper,
we propose a rendering framework for point-based geometry providing
high visual quality as well as efficient rendering. Our approach
is based on a two-pass splatting technique with Gaussian filtering,
resulting in a visual quality comparable to existing software rendering
systems. Using programmable graphics hardware we delegate all expensive
rendering tasks to the GPU, thereby minimizing data transfer and
saving CPU resources. The proposed system renders up to 28M mid-quality
or up to 10M high-quality surface splats per second on the latest
graphics hardware.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Botsch:2001:RFB,
author = {Botsch, M. and Kobbelt, L.},
title = {Resampling feature and blend regions in polygonal meshes for surface
anti-aliasing},
journal = j-CGF,
year = {2001},
volume = {20},
pages = {C/402-10, 552},
number = {3},
abstract = {Efficient surface reconstruction and reverse engineering techniques
are usually based on a polygonal mesh representation of the geometry:
the resulting models emerge from piecewise linear interpolation of
a set of sample points. The quality of the reconstruction not only
depends on the number and density of the sample points but also on
their alignment to sharp and rounded features of the original geometry.
Bad alignment can lead to severe alias artifacts. We present a sampling
pattern for feature and blend regions which minimizes these alias
errors. We show how to improve the quality of a given polygonal mesh
model by resampling its feature and blend regions within an interactive
framework. We further demonstrate sophisticated modeling operations
that can be implemented based on this resampling technique.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{PolygonMeshProcessingBook,
title = {Polygon Mesh Processing},
publisher = {AK Peters},
year = {2010},
author = {Mario Botsch and Leif Kobbelt and Mark Pauly and Pierre Alliez and
Bruno L{\'e}vy}
}
@ARTICLE{Botsch:2001:RPE,
author = {Botsch, M. and Kobbelt, L. P.},
title = {A robust procedure to eliminate degenerate faces from triangle meshes},
journal = {Vision, Modeling, and Visualization 2001. Proceedings},
year = {2001},
pages = {283-289},
abstract = {When using triangle meshes in numerical simulations or other sophisticated
downstream applications, we have to guarantee that no degenerate
faces are present since they have, e.g., no well defined normal vectors.
We present a simple but effective algorithm to remove such artifacts
from a given triangle mesh. The central problem is to make this algorithm
numerically robust because degenerate triangles are usually the source
for all kinds of numerical instabilities. Our algorithm is based
on a slicing technique that cuts a set of planes through the given
polygonal model. The mesh slicing operator only uses numerically
stable predicates and therefore is able to split faces in a controlled
manner. In combination with a custom tailored mesh decimation scheme
we are able to remove the degenerate faces from meshes like those
typically generated by tesselation units in CAD systems.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Botsch:2006:PCP,
author = {Mario Botsch and Mark Pauly and Markus Gross and Leif Kobbelt},
title = {{PriMo}: Coupled Prisms for Intuitive Surface Modeling},
booktitle = p-SGP,
year = {2006},
pages = {11--20}
}
@INPROCEEDINGS{Botsch2007,
author = {Mario Botsch and Mark Pauly and Leif Kobbelt and Pierre Alliez and
Bruno Levy},
title = {Geometric Modeling Based on Polygonal Meshes},
booktitle = {Eurographics 2008 Courses},
year = {2008},
date-modified = {2008-09-29 10:24:39 +0200}
}
@INPROCEEDINGS{Botsch2006,
author = {Mario Botsch and Mark Pauly and Christian R{\"o}ssl and Stephan Bischoff
and Leif Kobbelt},
title = {Geometric Modeling Based on Triangle Meshes},
booktitle = {Eurographics 2006 Course Notes},
year = {2006},
owner = {mario},
timestamp = {2006.10.27}
}
@ARTICLE{Botsch:2007:ASD,
author = {Mario Botsch and Mark Pauly and Martin Wicke and Markus Gross},
title = {Adaptive Space Deformations Based on Rigid Cells},
journal = j-CGF,
year = {2007},
volume = {26},
pages = {339--347},
number = {3}
}
@ARTICLE{Botsch:OLV,
author = {Mario Botsch and Olga Sorkine},
title = {On Linear Variational Surface Deformation Methods},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2008},
volume = {14},
pages = {213--230},
number = {1}
}
@MISC{HAZ:2006,
author = {Mario Botsch and Olga Sorkine},
title = {{H}immel, {A}rsch und {Z}wirn!},
year = {2006},
note = {Private communication},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{openmesh,
author = {M. Botsch and S. Steinberg and S. Bischoff and L. Kobbelt},
title = {{OpenMesh} -- a Generic and Efficient Polygon Mesh Data Structure},
booktitle = {OpenSG Symposium},
year = {2002},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Botsch2006a,
author = {Mario Botsch and Robert Sumner and Mark Pauly and Markus Gross},
title = {Deformation Transfer for Detail-Preserving Surface Editing},
booktitle = {Proceedings of VMV},
year = {2006},
pages = {357--364},
owner = {mario},
timestamp = {2006.10.29}
}
@ARTICLE{Botsch:2002:EHQ,
author = {Botsch, M. and Wiratanaya, A. and Kobbelt, L.},
title = {Efficient high quality rendering of point sampled geometry},
journal = {Rendering Techniques 2002. Eurographics Workshop Proceedings},
year = {2002},
pages = {53-318},
abstract = {We propose a highly efficient hierarchical representation for point
sampled geometry that automatically balances sampling density and
point coordinate quantization. The representation is very compact
with a memory consumption of far less than 2 bits per point position
which does not depend on the quantization precision. We present an
efficient rendering algorithm that exploits the hierarchical structure
of the representation to perform fast 3D transformations and shading.
The algorithm is extended to surface splatting which yields high
quality anti-aliased and water tight surface renderings. Our pure
software implementation renders up to 14 million Phong shaded and
textured samples per second and about 4 million anti-aliased splats
on a commodity PC. This is more than a factor 10 times faster than
previous algorithms.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{SIMOD:2007,
author = {Tamy Boubekeur and Olga Sorkine and Christophe Schlick},
title = {{SIMOD}: Making Freeform Deformation Size-Insensitive},
booktitle = {Proceedings of IEEE/Eurographics Symposium on Point-Based Graphics},
year = {2007},
pages = {47-56}
}
@INPROCEEDINGS{SIMODsketch:2007,
author = {Tamy Boubekeur and Olga Sorkine and Christophe Schlick},
title = {Scalable Freeform Deformation},
booktitle = {Proceedings of ACM SIGGRAPH 2007, Technical Sketches},
year = {2007}
}
@INPROCEEDINGS{BCCD04,
author = {David Bourguignon and Rapha{\"{e}}lle Chaine and Marie-Paule Cani
and George Drettakis},
title = {Relief: A Modeling by Drawing Tool},
booktitle = {First Eurographics Workshop on Sketch-Based Interfaces and Modeling},
year = {2004},
pages = {151-160},
owner = {sorkine},
timestamp = {2008.10.28}
}
@BOOK{Braess02,
title = {Finite Elements: Theory, fast solvers and applications in solid mechanics,
2nd edn},
year = {2002},
author = {D. Braess},
volume = {13},
number = {9},
pages = {1500},
journal = {Measurement Science and Technology},
owner = {sorkine},
timestamp = {2008.10.27},
}
@ARTICLE{BrainmanTo01SIMAX,
author = {Igor Brainman and Sivan Toledo},
title = {Nested-dissection orderings for sparse {LU} with partial pivoting},
journal = {SIAM Journal on Matrix Analysis and Applications},
year = {2002},
volume = {23},
pages = {998--112},
localurl = {Pubs/wide.pdf},
owner = {sorkine},
timestamp = {2008.10.27},
}
@INCOLLECTION{amg84,
author = {A. Brandt and S.~F. {McCormick} and J. Ruge},
title = {Algebraic Multigrid ({AMG}) for sparse matrix equations},
booktitle = {Sparsity and its Applications},
publisher = {Cambridge University Press},
year = {1984},
editor = {D.~J. Evans},
pages = {257--284},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Breen:1992:APP,
author = {D. E. Breen and D. H. House and P. H. Getto},
title = {A Physically-Based Particle Model of Woven Cloth},
journal = {The Visual Computer},
year = {1992},
volume = {8},
pages = {264--277},
number = {5-6},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Breen:1994:PTD,
author = {David E. Breen and Donald H. House and Michael J. Wozny},
title = {Predicting the Drape of Woven Cloth Using Interacting Particles},
booktitle = {Proceedings of SIGGRAPH 94},
year = {1994},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {365--372},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INBOOK{BrennerC04,
chapter = {4},
title = {Encyclopedia of Computational Mechanics},
publisher = {Wiley},
year = {2004},
author = {S.C. Brenner and C.Carstensen},
volume = {1},
chaptertitle = {Mixed Finite Element Methods},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{brezzi1991mah,
title = {{Mixed and hybrid finite element methods}},
publisher = {Springer-Verlag, New York},
year = {1991},
author = {Brezzi, F. and Fortin, M.}
}
@BOOK{BrezziF91,
title = {Mixed and hybrid finite element methods},
publisher = {Springer-Verlag},
year = {1991},
author = {Brezzi, F. and Fortin, M.},
volume = {15},
pages = {x+350},
series = {Springer Series in Computational Mathematics},
address = {New York},
mrclass = {65N30 (65-02 73V05 76M10)},
mrnumber = {MR1115205 (92d:65187)},
mrreviewer = {Lubor Malina},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{BrezziR77,
author = {Brezzi, F. and Raviart, P.-A.},
title = {Mixed finite element methods for 4th order elliptic equations},
booktitle = {Topics in numerical analysis, III (Proc. Roy. Irish Acad. Conf.,
Trinity Coll., Dublin, 1976)},
publisher = {Academic Press},
year = {1977},
pages = {33--56},
address = {London},
mrclass = {65N30},
mrnumber = {MR0657975 (58 \#31905)},
mrreviewer = {John Whiteman},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bridson:2002:RTC,
author = {Bridson, R. and Fedkiw, R. and Anderson, J.},
title = {Robust treatment of collisions, contact and friction for cloth animation},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {594-603},
number = {3},
annotation = {We present an algorithm to efficiently and robustly process collisions,
contact and friction in cloth simulation. It works with any technique
for simulating the internal dynamics of the cloth, and allows true
modeling of cloth thickness. We also show how our simulation data
can be post-processed with a collision-aware subdivision scheme to
produce smooth and interference free data for rendering.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bridson:2002:RTO,
author = {Robert Bridson and Ronald P. Fedkiw and John Anderson},
title = {Robust Treatment of Collisions, Contact, and Friction for Cloth Animation},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {594--603},
number = {3},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Bridson:2003:SCW,
author = {Robert Bridson and Sebastian Marino and Ronald Fedkiw},
title = {Simulation of Clothing with Folds and Wrinkles},
booktitle = {Proceedings of {ACM} {SIGGRAPH} / Eurographics Symposium on Comput
er Animation},
year = {2003},
editor = {D. Breen and M. Lin},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Bridson:2003:SCF,
author = {Bridson, R. and Marino, S. and Fedkiw, R.},
title = {Simulation of clothing with folds and wrinkles},
journal = {ACM SIGGRAPH/Eurographics Symposium on Computer Animation},
year = {2003},
pages = {28-36},
annotation = {Clothing is a fundamental part of a character's persona, a key storytelling
tool used to convey an intended impression to the audience. Draping,
folding, wrinkling, stretching, etc. all convey meaning, and thus
each is carefully controlled when filming live actors. When making
films with computer simulated cloth, these subtle but important elements
must be captured. In this paper we present several methods essential
to matching the behavior and look of clothing worn by digital stand-ins
to their real world counterparts. Novel contributions include a mixed
explicit/implicit time integration scheme, a physically correct bending
model with (potentially) nonzero rest angles for pre-shaping wrinkles,
an interface forecasting technique that promotes the development
of detail in contact regions, a post-processing method for treating
cloth-character collisions that preserves folds and wrinkles, and
a dynamic constraint mechanism that helps to control large scale
folding. The common goal of all these techniques is to produce a
cloth simulation with many folds and wrinkles improving the realism.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{multigrid-tutorial2,
title = {A Multigrid Tutorial},
publisher = {SIAM},
year = {2000},
author = {William~L. Briggs and Van~Emden Henson and Steve~F. McCormick},
address = {Philadelphia},
edition = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{BrownJM01,
author = {Brown, B. M. and Jimack, P. K. and Mihajlovi{\'c}, M. D.},
title = {An efficient direct solver for a class of mixed finite element problems},
journal = {Appl. Numer. Math.},
year = {2001},
volume = {38},
pages = {1--20},
number = {1-2},
coden = {ANMAEL},
fjournal = {Applied Numerical Mathematics. An IMACS Journal},
issn = {0168-9274},
mrclass = {65N30 (65F05)},
mrnumber = {MR1834765 (2002c:65200)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Brunet:1994:PNW,
author = {Brunet, M. and Sabourin, F.},
title = {Prediction of necking and wrinkles with a simplified shell element
in sheet forming},
year = {1994},
owner = {sorkine},
pages = {27},
timestamp = {2008.10.27}
}
@ARTICLE{Bruno:2001:AFH,
author = {Bruno, O. P. and Kunyansky, L. A.},
title = {A fast, high-order algorithm for the solution of surface scattering
problems: basic implementation, tests, and applications},
journal = {J. Comput. Phys.},
year = {2001},
volume = {169},
pages = {80--110},
number = {1},
coden = {JCTPAH},
fjournal = {Journal of Computational Physics},
issn = {0021-9991},
mrclass = {65N99 (76Q05)},
mrnumber = {2002b:65188},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Burt83,
author = {P.J. Burt and E.H Adelson},
title = {The {L}aplacian pyramid as a compact image code},
journal = {IEEE Trans. Communications},
year = {1983},
volume = {31},
pages = {532--540},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ba:lapl,
author = {P. J. Burt and E. H. Adelson},
title = {Laplacian Pyramid as a Compact Image Code},
journal = {IEEE Trans.\ Commun.},
year = {1983},
volume = {31},
pages = {532-540},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Buxton:1990:EII,
author = {Buxton, B. and Moran, T.},
title = {EuroPARC's integrated interactive intermedia facility ({IIIF}): early
experiences},
journal = {Proceedings of the IFIP WG 8.4 confernece on Multi-user interfaces
and applications},
year = {1990},
pages = {11--34},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Buxton:1986:STI,
author = {Buxton, W. and Myers, B.},
title = {A study in two-handed input},
booktitle = {CHI '86: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1986},
pages = {321--326},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {Boston, Massachusetts, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{BanschMN05,
author = {B{\"a}nsch, E. and Morin, P. and Nochetto, R. H.},
title = {A finite element method for surface diffusion: the parametric case},
journal = {J. Comput. Phys.},
year = {2005},
volume = {203},
pages = {321--343},
number = {1},
coden = {JCTPAH},
fjournal = {Journal of Computational Physics},
issn = {0021-9991},
mrclass = {65M60 (35K55 74N25 74S05 80M10)},
mrnumber = {MR2104399 (2005g:65139)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{BajajXu0,
author = {C. Bajaj, G. Xu},
title = {Anisotropic Diffusion of Noisy Surfaces and Noisy Functions on Surfaces},
booktitle = {Proc. of Information Visualization 2001, London, UK},
year = {2001},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zhang:1998:RLI,
author = {Caiming, Zhang and Fuhua, Cheng},
title = {Removing local irregularities of NURBS surfaces by modifying highlight
lines},
journal = {Computer Aided Design},
year = {1998},
volume = {30},
pages = {923-930},
number = {12},
abstract = {The highlight line model is a powerful tool in assessing the quality
of a surface. A method to remove local irregularities on a NURBS
surface by modifying its highlight lines is presented. The method
is intuitive and suitable for real-time interactive design. It allows
a designer to remove local irregularities on a NURBS surface by a
simple operation to smooth the highlight lines. Modification of the
control points of the surface is achieved by solving a system of
linear equations. Test results are included.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Campagna:1998:EDD,
author = {Campagna, S. and Kobbelt, L. and Seidel, H. P.},
title = {Enhancing digital documents by including 3D-models},
journal = {Computers \& Graphics},
year = {1998},
volume = {22},
pages = {655-666},
number = {6},
abstract = {Due to their simplicity, triangle meshes are used to represent geometric
objects in many applications. Since the number of triangles often
goes beyond the capabilities of computer graphics hardware and the
transmission time of such data is often inappropriately high. A large
variety of mesh simplification algorithms has been proposed in the
last pears. In this paper we identify major requirements for the
practical usability of general purpose mesh reduction algorithms
to enable the integration of triangle meshes into digital documents.
The driving idea is to understand mesh reduction algorithms as a
software extension to make more complex meshes accessible with limited
hardware resources (regarding both transmission and display). We
show how these requirements can be efficiently satisfied and discuss
implementation aspects in detail. We present a mesh decimation scheme
that fulfills these design goals and which has already been evaluated
by several users from different application areas. We apply this
algorithm to typical mesh data sets to demonstrate its performance.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Canham:1970:MEB,
author = {P. B. Canham},
title = { The minimum energy of bending as a possible explanation of the biconcave
shape of the human red blood cell},
journal = {J. Theor Biol.},
year = {1970},
volume = {36},
pages = {68--81},
number = {1},
month = {Jan},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{CGCDP:2002,
author = {Steve Capell and Seth Green and Brian Curless and Tom Duchamp and
Zoran Popovi{\'c}},
title = {A multiresolution framework for dynamic deformations},
booktitle = {Proceedings of the ACM SIGGRAPH/Eurographics Symposium on Computer
Animation},
year = {2002},
pages = {41--47},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Carignan:1992:DAS,
author = {Michel Carignan and Ying Yang and Nadia Magnenat Thalmann and Daniel
Thalmann},
title = {Dressing Animated Synthetic Actors with Complex Deformable Clothes},
booktitle = {Proceedings of {SIGGRAPH}},
year = {1992},
pages = {99--104},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{DoCarmo,
title = {Differential Geometry of Curves and Surfaces},
publisher = {Prentice-Hall},
year = {1976},
author = {do Carmo, Manfredo P.}
}
@ARTICLE{Carpenter:1986:INT,
author = {Carpenter, N. and Stolarski, H. and Belytschko, T.},
title = {Improvements in 3-node triangular shell elements},
journal = {International Journal for Numerical Methods in Engineering},
year = {1986},
volume = {23},
pages = {1643},
owner = {sorkine},
timestamp = {2008.10.27}
}
@CONFERENCE{carr2001rar,
author = {Carr, JC and Beatson, RK and Cherrie, JB and Mitchell, TJ and Fright,
WR and McCallum, BC and Evans, TR},
title = {Reconstruction and representation of 3{D} objects with radial basis
functions},
booktitle = {Proc.\ ACM SIGGRAPH},
year = {2001},
pages = {67--76},}
@ARTICLE{Carr:2004:PD,
author = {Carr, N. A. and Hart, J. C.},
title = {Painting detail},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {845--852},
number = {3},
abstract = {Surface painting is a technique that allows a user to paint a texture
directly onto a surface, usually with a texture atlas: a 1:1 mapping
between the surface and its texture image. Many good automatic texture
atlas generation methods exist that evenly distribute texture samples
across a surface based on its area and/or curvature, and some are
even sensitive to the frequency spectrum of the input texture. However,
during the surface painting process, the texture can change nonuniformly
and unpredictably and even the best atlases are static and can thus
fail to reproduce sections of finely painted detail such as surface
illustration. We present a new texture atlas algorithm that distributes
initial texture samples evenly according to surface area and texture
frequency, and, more importantly, maintains this distribution as
the texture signal changes during the surface painting process. The
running time is further accelerated with a novel GPU implementation
of the surface painting process. The redistribution of samples is
transparent to the user, resulting in a surface painting system of
seemingly unlimited resolution. The atlas construction is local,
making it-fast enough to run interactively on models containing oven
100K faces.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Catmull:1978:RGB,
author = {Ed Catmull and James Clark},
title = {Recursively Generated {B}-Spline Surfaces on Arbitrary Topological
Meshes},
journal = {Computer-Aided Design},
year = {1978},
volume = {10},
pages = {350--355},
number = {6},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{cav-dah-mic:subdivision,
author = {A. S. Cavaretta and W. Dahmen and C. A. Micchelli},
title = {Stationary Subdivision},
journal = {Memoirs Amer. Math. Soc.},
year = {1991},
volume = {93},
number = {453},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{CazalsPouget03,
author = {F. Cazals and M. Pouget},
title = {Estimating differential quantities using polynomial fitting of osculating
jets},
booktitle = p-SGP,
year = {2003},
pages = {177--187}
}
@INPROCEEDINGS{Celniker1991,
author = {George Celniker and Dave Gossard},
title = {Deformable curve and surface finite-elements for free-form shape
design},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1991},
pages = {257--266},
owner = {mario},
timestamp = {2006.10.26}
}
@ARTICLE{Celniker:1991:DCS,
author = {Celniker, G. and Gossard, D.},
title = {Deformable curve and surface finite-elements for free-form shape
design},
journal = {Computer Graphics},
year = {1991},
volume = {25},
pages = {257-266},
number = {4},
abstract = {The finite element method is applied to generate primitives that build
continuous deformable shapes designed to support a new free-form
modeling paradigm. The primitives autonomously deform to minimize
an energy functional subject to user controlled geometric constraints
and loads. The approach requires less user input than conventional
free-form modeling approaches because the shape can be parameterized
independently of the number of degrees of freedom needed to describe
the shape. Both a curve and a surface finite element are developed.
The properties of these geometric primitives have been engineered
to support an interactive three phase approach for defining very
fair free-form shapes as found in automobiles, ship hulls and car
bodies. The shape's character lines or folds and edges are defined
with deformable curve segments. These character lines are then `skinned'
with a deformable surface. The final shape is sculpted interactively
by applying loads to the surface to control the surface shape between
character lines. Shapes created with this technique enjoy the advantage
that they are already meshed for further finite element analysis.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Cendoya:1996:EDA,
author = {Cendoya, P.},
title = {Explicit dynamic analysis of shells using rotational dof-free triangles},
year = {1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Chanclou:1996:PMO,
author = {B. Chanclou and A. Luciani and A. Habibi},
title = {Physical Models of Loose Soils Dynamically Marked by a Moving Object},
booktitle = {Computer Animation '96},
year = {1996},
pages = {27--35},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Chao:2010:ASG,
author = {Isaac Chao and Ulrich Pinkall and Patrick Sanan and Peter Schr{\"{o}}der},
title = {A Simple Geometric Model for Elastic Deformations},
journal = j-TOG,
year = {2010},
volume = {29},
pages = {38:1--38:6},
number = {4},
month = jul
}
@ARTICLE{HighpassAnalysis04,
author = {Doron Chen and Daniel Cohen-Or and Olga Sorkine and Sivan Toledo},
title = {Algebraic Analysis of High-Pass Quantization},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {1259--1282},
number = {4},
}
@ARTICLE{ChenToledo2003ETNA,
author = {Doron Chen and Sivan Toledo},
title = {{Vaidya}'s preconditioners: Implementation and Experimental Study},
journal = {Electronic Transactions on Numerical Analysis},
year = {2003},
volume = {16},
pages = {30--49},
bdsk-url-1 = {Pubs/vaidya-etna.pdf},
}
@ARTICLE{Donoho,
author = {Scott Shaobing Chen and David L. Donoho and Michael A. Saunders},
title = {Atomic Decomposition by Basis Pursuit},
journal = {SIAM Journal on Scientific Computing},
year = {1999},
volume = {20},
pages = {33--61},
number = {1}
}
@ARTICLE{Choi:1999:EGR,
author = {Choi, I. and Lee, K.},
title = {Efficient generation of reflection lines to evaluate car body surfaces},
journal = {Mathematical Engineering in Industry},
year = {1999},
volume = {7},
pages = {233-250},
number = {2},
abstract = {In the process of car body design, various surfaces are generated
from given boundary curves. Depending upon the method of the surface
generation and the quality of the boundary curves provided, the resulting
surfaces may have global or local irregularities in many cases. Thus
it would be necessary for the designer to evaluate the surface quality
and to modify the surface or to use a different generation method
based on the evaluation results. This capability is very important
because the defect of the surface quality detected in the production
stage will require the rework of the dies and will cause a big loss
of money and time. A method of surface interrogation using reflection
lines is introduced in this paper. We applied Blinn-Newell type of
reflection mapping (Blin and Newell, 1976) to generate reflection
lines on the trimmed NURBS surface. Since reflection lines are obtained
from reflection mapping that uses simple and physically acceptable
mapping algorithm, they can be efficiently used to simulate the reflection
test on the real part in the production line.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Choi:2005:RPC,
author = {Choi, Kwang-Jin and Ko, Hyeong-Seok},
title = {Research problems in clothing simulation},
journal = {Computer Aided Design},
year = {2005},
volume = {37},
pages = {585-592},
number = {6},
annotation = {Clothing simulation and animation are of great importance in computer
animation. If cloth simulations could be improved to the point that
they could generate realistic cloth motion in real-time, they would
find uses in many aspects of daily life such as in fashion design
and manufacturing. The area of cloth simulation and animation is
full of technical challenges: creating more realistic results, achieving
faster run-times, and developing methods capable of constructing
and simulating more complex garments. This paper provides an overview
of the key procedures involved in the creation of clothed characters,
describes the current state-of-the-art techniques, and proposes the
research problems that most require further study. Three technical
aspects of cloth simulation are considered in this paper: garment
construction, physically based simulation, and collision resolution.
[All rights reserved Elsevier].},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Choi:2003:EIB,
author = {Choi, Kwang-Jin and Ko, Hyeong-Seok},
title = {Extending the immediate buckling model to triangular meshes for simulating
complex clothes},
booktitle = {Eurographics},
year = {2003},
pages = {187-191},
note = {State of the art report},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Choi:2002:SRC,
author = {Choi, Kwang-Jin and Ko, Hyeong-Seok},
title = {Stable but responsive cloth},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {604-611},
number = {3},
annotation = {We present a semi-implicit cloth simulation technique that is very
stable yet also responsive. The stability of the technique allows
the use of a large fixed time step when simulating all types of fabrics
and character motions. The animations generated using this technique
are strikingly realistic. Wrinkles form and disappear in a quite
natural way, which is the feature that most distinguishes textile
fabrics from other sheet materials. Significant improvements in both
the stability and realism were made possible by overcoming the post-buckling
instability as well as the numerical instability. The instability
caused by buckling arises from a structural instability and therefore
cannot be avoided by simply employing a semi-implicit method. Addition
of a damping force may help to avoid instabilities; however, it can
significantly degrade the realism of the cloth motion. The method
presented here uses a particle-based physical model to handle the
instability in the post-buckling response without introducing any
fictitious damping.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ChoppS99,
author = {Chopp, D. L. and Sethian, J. A.},
title = {Motion by intrinsic {L}aplacian of curvature},
journal = {Interfaces Free Bound.},
year = {1999},
volume = {1},
pages = {107--123},
number = {1},
fjournal = {Interfaces and Free Boundaries. Modelling, Analysis and Computation},
issn = {1463-9963},
mrclass = {65D17 (65D18)},
mrnumber = {MR1865108 (2002j:65023)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Chou02,
author = {Peter H. Chou and Teresa H. Meng },
title = { Vertex Data Compression through Vector Quantization },
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2002},
volume = {8},
pages = {373--382},
number = {4}
}
@BOOK{Chung97,
title = {Spectral Graph Theory},
publisher = {American Mathematical Society},
year = {1997},
author = {Fan~R.~K. Chung}
}
@BOOK{Ciarlet:2000:ME3,
title = {Mathematical Elasticity. Vol. {III}},
year = {2000},
author = {Philippe Ciarlet},
volume = {29},
pages = {471},
series = {Studies in Mathematics and its Applications},
address = {Amsterdam},
note = {Theory of shells},
mrclass = {74K25},
mrnumber = {2001j:74060},
mrreviewer = {Michel C. Delfour},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Ciarlet78,
title = {The finite element method for elliptic problems},
publisher = {North-Holland Publishing Co.},
year = {1978},
author = {Ciarlet, P. G.},
pages = {xix+530},
address = {Amsterdam},
note = {Studies in Mathematics and its Applications, Vol. 4},
mrclass = {65N30},
mrnumber = {MR0520174 (58 \#25001)},
mrreviewer = {Josef Nedoma},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{CiarletR74,
author = {Ciarlet, P. G. and Raviart, P.-A.},
title = {A mixed finite element method for the biharmonic equation},
booktitle = {Mathematical aspects of finite elements in partial differential equations
(Proc. Sympos., Math. Res. Center, Univ. Wisconsin, Madison, Wis.,
1974)},
publisher = {Math. Res. Center, Univ. of Wisconsin-Madison, Academic Press, New
York},
year = {1974},
pages = {125--145. Publication No. 33},
mrclass = {65N30},
mrnumber = {MR0657977 (58 \#31907)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ciarlet:2001:JOA,
author = {Ciarlet, P. G. and Roquefort, A.},
title = {Justification of a two-dimensional nonlinear shell model of {K}oiter's
type},
journal = {Chinese Ann. Math. Ser. B},
year = {2001},
volume = {22},
pages = {129--144},
number = {2},
coden = {CHAMEB},
fjournal = {Chinese Annals of Mathematics. Series B},
issn = {0252-9599},
mrclass = {74K25 (35C20 35Q72 74G15)},
mrnumber = {2002g:74034},
mrreviewer = {Petr E. Tovstik},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{cignoni98metro,
author = {P. Cignoni and C. Rocchini and R. Scopigno},
title = {{Metro}: Measuring Error on Simplified Surfaces},
journal = j-CGF,
year = {1998},
volume = {17},
pages = {167--174},
number = {2}
}
@ARTICLE{Cirak:2001:FCC,
author = {Cirak, F. and Ortiz, M.},
title = {Fully $C^1$-Conforming Subdivision Elements for Finite Deformation
Thin-Shell Analysis},
journal = {Internat. J. Numer. Methods Engrg.},
year = {2001},
volume = {51},
pages = {813--833},
number = {7},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{COP:2004:CATSFF,
author = {Fehmi Cirak and Michael Ortiz and Anna Pandolfi},
title = {A Cohesive Approach to Thin-Shell Fracture and Fragmentation},
journal = {Computer Methods in Applied Mechanics and Engineering},
year = {to appear},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Cirak:2000:SSA,
author = {F. Cirak and M. Ortiz and P. Schr\"oder},
title = {Subdivision Surfaces: A New Paradigm for Thin-Shell Finite-Element
Analysis},
journal = {Internat. J. Numer. Methods Engrg.},
year = {2000},
volume = {47},
pages = {2039--2072},
number = {12},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Cirak:2002:IMF,
author = {Fehmi Cirak and Michael J. Scott and Erik K. Antonsson and Michael
Ortiz and Peter Schr{\"{o}}der},
title = {Integrated modeling, finite-element analysis, and engineering design
for thin-shell structures using subdivision},
journal = {Computer-Aided Design},
year = {2002},
volume = {34},
pages = {137--148},
number = {2},
month = feb,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Clarenz:2004:FEM,
author = {U. Clarenz and U. Diewald and G. Dziuk and M. Rumpf and R. Rusu},
title = {A finite element method for surface restoration with smooth boundary
conditions},
journal = {Comput. Aided Geom. Des.},
year = {2004},
volume = {21},
pages = {427--445},
number = {5},
issn = {0167-8396},
owner = {sorkine},
publisher = {Elsevier Science Publishers B. V.},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{375276,
author = {U. Clarenz and U. Diewald and M. Rumpf},
title = {Anisotropic geometric diffusion in surface processing},
booktitle = {VIS '00: Proceedings of the conference on Visualization '00},
year = {2000},
pages = {397--405},
address = {Los Alamitos, CA, USA},
publisher = {IEEE Computer Society Press},
location = {Salt Lake City, Utah, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{cohen94,
author = {A. Cohen and I. Daubechies},
title = {A new technique to estimate the regularity of refinable functions},
journal = {Rev. Math. Iberoamericanna},
year = {1996},
volume = {12},
pages = {527-591},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{cohen97,
author = {Albert Cohen and Nira Dyn and David Levin},
title = {Matrix subdivision schemes},
institution = {Universit\'{e} Pierre et Marie Curie},
year = {1997},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Cohen:1999:AIF,
author = {Jonathan M. Cohen and Lee Markosian and Robert C. Zeleznik and John
F. Hughes and Ronen Barzel},
title = {An Interface for Sketching 3{D} Curves},
booktitle = {1999 ACM Symposium on Interactive 3{D} Graphics},
year = {1999},
pages = {17--22},
month = apr,
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{CohenOr:1999,
author = {Daniel Cohen-Or and David Levin and Offir Remez},
title = {Progressive Compression of Arbitrary Triangular Meshes},
booktitle = {Proceedings of IEEE Visualization},
year = {1999},
editor = {David Ebert and Markus Gross and Bernd Hamann},
pages = {67--72},
address = {Los Alamitos, CA, USA},
month = {October},
publisher = {IEEE},
keywords = {compression, streaming, progressive meshes, simplification}
}
@ARTICLE{CohenOr98,
author = {Daniel Cohen-Or and David Levin and Amira Solomovici},
title = {Three-dimensional distance field metamorphosis},
journal = j-TOG,
year = {1998},
volume = {17},
pages = {116--141},
number = {2},
bdsk-url-1 = {http://doi.acm.org/10.1145/274363.274366},
}
@ARTICLE{Harmonization:2006,
author = {Daniel Cohen-Or and Olga Sorkine and Ran Gal and Tommer Leyvand and
Ying-Qing Xu},
title = {Color Harmonization},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {624--630},
number = {3},
}
@ARTICLE{variational-04,
author = {David Cohen-Steiner and Pierre Alliez and Mathieu Desbrun},
title = {Variational Shape Approximation},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {905--914},
number = {3},
bdsk-url-1 = {http://doi.acm.org/10.1145/1015706.1015817},
}
@INPROCEEDINGS{Cohen:2003:RDT,
author = {David Cohen-Steiner and Jean-Marie Morvan},
title = {Restricted Delaunay Triangulations and Normal Cycle},
booktitle = {Proc. 19th Annu. {ACM} Sympos. Comput. Geom.},
year = {2003},
pages = {237--246},
geombib = {not yet},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{col-hei:charact1,
author = {D. Colella and C. Heil},
title = {Characterizations of Scaling Functions: {C}ontinuous Solutions},
journal = SIMAT,
year = {1994},
volume = {15},
pages = {496--518},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{coeg:86,
author = {T. F. Coleman and A. Edenbrandt and J. R. Gilbert},
title = {Predicting Fill for Sparse Orthogonal Factorization},
journal = {J. Assoc. Comput. Mach.},
year = {1986},
volume = {33},
pages = {517--532},
kwds = {sparse, fill}
}
@ARTICLE{Connor:1967:SMS,
author = {Connor, J. J. and Brebia, C.},
title = {Stiffness matrix for shallow rectangular shell elements},
journal = {Journal of Engineering Mechanics.},
year = {1967},
volume = {93},
pages = {43},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Coquillart:1990:EFD,
author = {Sabine Coquillart},
title = {Extended Free-Form Deformation: A Sculpturing Tool for 3{D} Geometric
Modeling},
booktitle = {Proceedings of ACM SIGGRAPH 90},
year = {1990},
pages = {187--196}
}
@BOOK{Cormen,
title = {Introduction to Algorithms},
publisher = {McGraw-Hill Higher Education},
year = {2001},
author = {Thomas H. Cormen and Clifford Stein and Ronald L. Rivest and Charles
E. Leiserson}
}
@INPROCEEDINGS{PointWatermark04,
author = {D. Cotting and T. Weyrich and M. Pauly and M. Gross},
title = {Robust Watermarking of Point-Sampled Geometry},
booktitle = p-SMI,
year = {2004},
pages = {233--242},
}
@INPROCEEDINGS{Courshesnes:1995:VAE,
author = {Martin Courshesnes and Pascal Volino and Nadia Magnenat-Thalmann},
title = {Versatile and Efficient Techniques for Simulating Cloth and Other
Deformable Objects},
booktitle = {Proceedings of SIGGRAPH 95},
year = {1995},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {137--144},
month = aug,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{crai:55,
author = {E.~J. Craig},
title = {The $N$-step Iteration Procedure},
journal = {J. Math. Phys.},
year = {1955},
volume = {34},
pages = {65--73},
kwds = {iter, cg}
}
@INPROCEEDINGS{Curless:1996:VMB,
author = {B. Curless and M. Levoy},
title = {A Volumetric Method for Building Complex Models from Range Images},
booktitle = {SIGGRAPH 96 Conference Proceedings},
year = {1996},
editor = {Holly Rushmeier},
series = {Annual Conference Series},
pages = {303--312},
month = {August},
organization = {ACM SIGGRAPH},
publisher = {Addison Wesley},
note = {held in New Orleans, Louisiana, 04-09 August 1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{begets92,
author = {W. Dahmen and C. A. Micchelli and H-P. Seidel},
title = {Blossoming Begets {B}-Splines Bases Built Better by {B}-Patches},
journal = {Mathematics of Computation},
year = {1992},
volume = {59},
pages = {97--115},
number = {199},
month = {July},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dahmen-1999,
author = {Dahmen, Wolfgang and Schneider, Reinhold},
title = {Wavelets on manifolds. {I}. {C}onstruction and domain decomposition},
journal = {SIAM J. Math. Anal.},
year = {1999},
volume = {31},
pages = {184--230 (electronic)},
number = {1},
fjournal = {SIAM Journal on Mathematical Analysis},
issn = {1095-7154},
mrclass = {65T60 (42C40 46E35)},
mrnumber = {2000k:65242},
mrreviewer = {Qing Tang Jiang},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Catia,
author = { {Dassault Systemes} },
title = {{CATIA PLM Solutions}},
owner = {sorkine},
timestamp = {2008.10.28}
}
@BOOK{dau:ten,
title = {Ten Lectures on Wavelets},
publisher = SIAM,
year = {1992},
author = {I. Daubechies},
series = {CBMS-NSF Regional Conf.\ Series in Appl.\ Math., Vol.\ 61},
address = {Philadelphia, PA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{dau-lag:two-scale1,
author = {I. Daubechies and J. C. Lagarias},
title = {Two-scale Difference Equations {\rm I}. {E}xistence and Global Regularity
of Solutions},
journal = SIMAT,
year = {1991},
volume = {22},
pages = {1388--1410},
number = {5},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Daubert:2001:ECM,
author = {Katja Daubert and Hendrik P. A. Lensch and Wolfgang Heidrich and
Hans-Peter Seidel},
title = {Efficient Cloth Modeling and Rendering},
booktitle = {Rendering Techniques 2001: 12th Eurographics Workshop on Rendering},
year = {2001},
pages = {63--70},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{DaviniP01,
author = {Davini, Cesare and Pitacco, Igino},
title = {An Unconstrained Mixed Method for the Biharmonic Problem},
journal = {SIAM Journal on Numerical Analysis},
year = {2001},
volume = {38},
pages = {820--836},
number = {3},
abstract = {In this work we present a finite element method for the biharmonic
problem based on the primal mixed formulation of Ciarlet and Raviart
[A mixed finite element method for the biharmonic equation, in Symposium
on Mathematical Aspects of Finite Elements in Partial Differential
Equations, C. de Boor, ed., Academic Press, New York, 1974, pp. 125-143).
We introduce a dual mesh and a suitable approximation of the constraint
that enables us to eliminate the auxiliary variable with no computational
effort. Thus, the discrete problem turns to be governed by a system
of linear equations with symmetric and positive definite coefficients
and can be solved by classical algorithms. The construction of the
stiffness matrix is obtained by using Courant triangles and can be
done with great efficiency.},
copyright = {Copyright 2001 Society for Industrial and Applied Mathematics},
issn = {00361429},
jstor_articletype = {primary_article},
jstor_formatteddate = {2001},
owner = {sorkine},
publisher = {Society for Industrial and Applied Mathematics},
timestamp = {2008.10.27},
}
@MANUAL{cholmod1.0,
title = {\textsc{Cholmod}: a sparse supernodal {C}holesky factorization and
modification package, version 1.0},
author = {Timothy A. Davis},
organization = {University of Florida},
address = {Available online at \url{http://www.cise.ufl.edu/research/sparse/cholmod/}},
month = jan,
year = {2006}
}
@ARTICLE{davis04umfpack,
author = {Timothy A. Davis},
title = {{UMFPACK V4.3}---an unsymmetric-pattern multifrontal method},
journal = {ACM Trans. Math. Softw.},
year = {2004},
volume = {30},
pages = {196--199},
number = {2},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{colamd00TR,
author = {Timothy A. Davis and John R. Gilbert and Stefan I. Larimore and Esmond
G. Ng},
title = {A column approximate minimum degree ordering algorithm},
journal = {ACM Trans. Math. Softw.},
year = {2004},
volume = {30},
pages = {353--376},
number = {3}
}
@ARTICLE{DavisHager1999,
author = {Timothy A. Davis and William W. Hager},
title = {Modifying a Sparse {C}holesky Factorization},
journal = {SIAM Journal on Matrix Analysis and Applications},
year = {1999},
volume = {20},
pages = {606--627},
number = {3}
}
@INPROCEEDINGS{DesbrunHM03,
author = {M. Debrun and A.N. Hirani and J.E. Marsden},
booktitle = {Proceedings of the 42nd IEEE Conference on Decision and Control},
year = {2003},
volume = {5},
pages = {4902-4907},
month = {December},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{DeBry:2002:PRT,
author = {DeBry, D. G. and Gibbs, J. and Petty, D. D. and Robins, N.},
title = {Painting and rendering textures on unparameterized models},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {763--768},
number = {3},
abstract = {This paper presents a solution for texture mapping unparameterized
models. The quality of a texture on a model is often limited by the
model's parameterization into a 2D texture space. For models with
complex topologies or complex distributions of structural detail,
finding this parameterization can be very difficult and usually must
be performed manually through a slow iterative process between the
modeler and texture painter. This is especially true of models which
carry no natural parameterizations, such as subdivision surfaces
or models acquired from 3D scanners. Instead, we remove the 2D parameterization
and store the texture in 3D space as a sparse, adaptive octree. Because
no parameterization is necessary, textures can be painted on any
surface that can be rendered. No mappings between disparate topologies
are used, so texture artifacts such as seams and stretching do not
exist. Because this method is adaptive, detail is created in the
map only where required by the texture painter, conserving memory
usage.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Debunne:2001:DRD,
author = {Gilles Debunne and Mathieu Desbrun and Marie-Paule Cani and Alan
H. Barr},
title = {\href{http://www-grail.usc.edu/pubs/DDCB_adapt.pdf}{Dynamic Real-Time
Deformations Using Space \& Time Adaptive Sampling}},
journal = {Proceedings of {SIGGRAPH} 2001},
year = {2001},
pages = {31--36},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{decarlo03suggestive,
author = {Doug DeCarlo and Adam Finkelstein and Szymon Rusinkiewicz and Anthony
Santella},
title = {Suggestive contours for conveying shape},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {848--855},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@TECHREPORT{Dziuk:2004:,
author = {K. Deckelnick and G. Dziuk},
title = {Error estimates for the Willmore flow of graphs},
institution = {Preprint Fakult{\"a}t f{\"u}r Mathematik und Physik,Universit\"{a}t
Freiburg},
year = {2004},
number = {25-04},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Deckelnick:2002:FDN,
author = {Deckelnick, Klaus and Dziuk, Gerhard},
title = {A fully discrete numerical scheme for weighted mean curvature flow},
journal = {Numer. Math.},
year = {2002},
volume = {91},
pages = {423--452},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Deckelnick:2001:CNS,
author = {Deckelnick, Klaus and Dziuk, Gerhard},
title = {Convergence of numerical schemes for the approximation of level set
solutions to mean curvature flow},
journal = {Numerical methods for viscosity solutions and applications (Heraklion,
1999)},
year = {2001},
volume = {59},
pages = {77--93},
note = {Ser. Adv. Math. Appl. Sci. World Sci. Publishing River Edge, NJ},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Deering95,
author = {Michael F. Deering},
title = {Geometry Compression},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1995},
pages = {13--20},
publisher = {Addison Wesley}
}
@MISC{Delingette:2004:AVM,
author = {Delingette, H. and Linney, A. and Magnenat-Thalmann, N. and Wu, Yin
and Bartz, D. and Hauth, M. and Mueller, K.},
title = {Advanced Virtual Medicine: Techniques and Applications for Medicine
Oriented Computer Graphics},
year = {2004},
note = {Eurographics Tutorial},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Denny97,
author = {M. Denny and C. Sohler},
title = {Encoding a triangulation as a permutation of its point set},
booktitle = {Canadian Conference on Computational Geometry},
year = {1997},
pages = {39--43}
}
@ARTICLE{MeshIKreduced06,
author = {Kevin G. Der and Robert W. Sumner and Jovan Popovi\'{c}},
title = {Inverse Kinematics for Reduced Deformable Models},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {1174--1179},
number = {3}
}
@ARTICLE{dma-ipsm-02,
author = {Mathieu Desbrun and Mark Meyer and Pierre Alliez},
title = {Intrinsic Parameterizations of Surface Meshes},
journal = j-CGF,
year = {2002},
volume = {21},
pages = {209--218},
number = {3}
}
@INPROCEEDINGS{desbrun99implicitfairing,
author = {Mathieu Desbrun and Mark Meyer and Peter Schr\"{o}der and Alan H.
Barr},
title = {Implicit fairing of irregular meshes using diffusion and curvature
flow},
booktitle = {Proccedings of ACM SIGGRAPH},
year = {1999},
pages = {317--324},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{desbrun:99:IF,
author = {Mathieu Desbrun and Mark Meyer and Peter Schr{\"o}der and Alan H.
Barr},
title = {Implicit Fairing of Irregular Meshes Using Diffusion and Curvature
Flow},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1999},
pages = {317--324},
}
@ARTICLE{desbrun2007ddg,
author = {Desbrun, M. and Polthier, K.},
title = {{Discrete Differential Geometry}},
journal = {Computer Aided Geometric Design},
year = {2007},
volume = {24},
pages = {427--427},
number = {8-9},
publisher = {Elsevier}
}
@ARTICLE{Desbrun:1999:IAS,
author = {Desbrun, M. and Schr\"{o}der, P. and Barr, A.},
title = {Interactive animation of structured deformable objects},
journal = {Proceedings. Graphics Interface '99},
year = {1999},
pages = {1-8},
annotation = {We propose a stable and efficient algorithm for animating mass-spring
systems. An integration scheme derived from implicit integration
allows us to obtain interactive realistic animation of any mass-spring
network. We alleviate the need to solve a linear system through the
use of a predictor-corrector approach: we first compute a rapid approximation
of the implicit integration, then we correct this estimate in a post-step
process to preserve momentum. Combined with an inverse dynamics process
to implement collisions and other constraints, this method provides
a simple, stable and tunable model for deformable objects suitable
for virtual reality. An implementation in a VR environment demonstrates
this approach.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{des-dub:symmetric,
author = {G. Deslauriers and S. Dubuc},
title = {Symmetric Iterative Interpolation Processes},
journal = CONAP,
year = {1989},
volume = {5},
pages = {49--68},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{des-dub:interpolation,
author = {G. Deslauriers and S. Dubuc},
title = {Interpolation Dyadique},
booktitle = {Fractals, dimensions non enti\`eres et applications},
publisher = {Masson},
year = {1987},
pages = {44-55},
address = {Paris},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Deussen:1995:USA,
author = {Deussen, O. and Kobbelt, L. and Tucke, P.},
title = {Using simulated annealing to obtain good nodal approximations of
deformable bodies},
journal = {Computer Animation and Simulation '95. Proceedings of the Eurographics
Workshop},
year = {1995},
pages = {30-43},
abstract = {We present a method to obtain good approximations of deformable bodies
with spring/mass systems. An iterative algorithm based on Voronoi
diagrams is used to get a good mass distribution. The elastic properties
of the system are optimized by simulated annealing. Results are shown,
and some applications are discussed.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{devine-00,
author = {Karen Devine and Bruce Hendrickson and Erik Boman and Matthew~St.
John and Courtenay Vaughan},
title = {Design of dynamic load-balancing tools for parallel applications},
booktitle = {Proceedings of the 14th international conference on Supercomputing},
year = {2000},
month = {May},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Dewaele:2003:IGL,
author = {Guillaume Dewaele and Marie-Paule Cani},
title = {Interactive Global and Local Deformations for Virtual Clay},
booktitle = {Pacific Graphics},
year = {2003},
note = {Canmore, Canada},
keywords = {modelling, implicit surfaces, deformations},
owner = {sorkine},
timestamp = {2008.10.27},
}
@INPROCEEDINGS{Dietz:2001:DMU,
author = {Dietz, P. and Leigh, D.},
title = {Diamond{T}ouch: a multi-user touch technology},
booktitle = {UIST '01: Proceedings of the 14th annual ACM symposium on User interface
software and technology},
year = {2001},
pages = {219--226},
address = {New York, NY, USA},
location = {Orlando, Florida},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dong05,
author = {S. Dong and S. Kircher and M. Garland},
title = {Harmonic functions for quadrilateral remeshing of arbitrary manifolds},
journal = {Computer Aided Geometric Design},
year = {2005},
volume = {22},
pages = {392--423},
number = {5},
bdsk-url-1 = {http://dx.doi.org/10.1016/j.cagd.2005.04.004},
publisher = {Elsevier Science Publishers B. V.}
}
@UNPUBLISHED{don:interpolating,
author = {D. L. Donoho},
title = {Interpolating Wavelet Transforms},
note = {Preprint, Department of Statistics, Stanford University},
year = {1992},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{doo78,
author = {D. Doo},
title = {A Subdivision Algorithm for Smoothing Down Irregularly Shaped Polyhedrons},
booktitle = {Proceedings on Interactive Techniques in Computer Aided Design},
year = {1978},
pages = {157--165},
address = {Bologna},
annote = {Quadratic scheme of thesis work.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{doosabin78,
author = {D. Doo and M. Sabin},
title = {Analysis of the Behaviour of Recursive Division Surfaces near Extraordinary
Points},
journal = CAD,
year = {1978},
volume = {10},
pages = {356--360},
number = {6},
annote = {Eigen analysis of original Catmull-Clark cubic scheme and a modification.
Also analysis of a quadratic scheme of Doo (his thesis) and another
scheme due to Catmull-Clark.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{DoganMNV07,
author = {Do{\v{g}}an, G. and Morin, P. and Nochetto, R. H. and Verani, M.},
title = {Discrete gradient flows for shape optimization and applications},
journal = {Comput. Methods Appl. Mech. Engrg.},
year = {2007},
volume = {196},
pages = {3898--3914},
number = {37-40},
coden = {CMMECC},
fjournal = {Computer Methods in Applied Mechanics and Engineering},
issn = {0045-7825},
mrclass = {49Q10 (65M60)},
mrnumber = {MR2340012 (2008h:49029)},
mrreviewer = {Gianluigi Rozza},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{draper03freddy,
author = {Geoffrey Draper and Parris Egbert},
title = {A Gestural Interface to Free-Form Deformation},
booktitle = {Proceedings of Graphics Interface},
year = {2003},
pages = {113--120},
owner = {sorkine},
timestamp = {2008.10.28}
}
@UNPUBLISHED{gradientVideo04,
author = {Iddo Drori and Tommer Leyvand and Shachar Fleishman and Daniel Cohen-Or
and Hezy Yeshurun},
title = {Video operations in the gradient domain},
note = {Tel Aviv University},
year = {2004}
}
@ARTICLE{du2007ffg,
author = {Du, H. and Qin, H.},
title = {{Free-Form Geometric Modeling by Integrating Parametric and Implicit
PDEs}},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2007},
volume = {13},
pages = {549--561},
number = {3},
owner = {sorkine},
publisher = {IEEE Computer Society},
timestamp = {2008.10.27}
}
@ARTICLE{DuQin2005,
author = {Haixia Du and Hong Qin},
title = {Dynamic PDE-based surface design using geometric and physical constraints},
journal = {Graph. Models},
year = {2005},
volume = {67},
pages = {43--71},
number = {1},
address = {San Diego, CA, USA},
issn = {1524-0703},
publisher = {Academic Press Professional, Inc.}
}
@ARTICLE{dubuc86,
author = {S. Dubuc},
title = {Interpolation Through an Iterative Scheme},
journal = {J.\ Math.\ Anal.\ Appl.},
year = {1986},
volume = {114},
pages = {185--204},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{duchamp-97,
author = { T. Duchamp and A. Certain and A. DeRose and W. Stuetzle},
title = { Hierarchical Computation of {P}{L} harmonic Embeddings},
institution = {University of Washington},
year = {1997},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{Duchamp:1997:HCO,
author = {T. Duchamp and A. Certain and A. DeRose and W. Stuetzle},
title = {Hierarchical Computation of PL harmonic Embeddings},
institution = {University of Washington},
year = {1997},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{duff:74,
author = {I. S. Duff},
title = {Pivot Selection and Row Orderings in {Givens} Reduction on Sparse
Matrices},
journal = {Computing},
year = {1974},
volume = {13},
pages = {239--248},
kwds = {perm, sparse, fill}
}
@ARTICLE{dure:83,
author = {I. S. Duff and J. K. Reid},
title = {The Multifrontal Solution of Indefinite Sparse Symmetric Linear Systems},
journal = {ACM Trans. Math. Software},
year = {1983},
volume = {9},
pages = {302--325},
kwds = {sparse,multfr }
}
@BOOK{Duffet:1997:CPV,
title = {Computational Plasticity V},
publisher = {CIMNE},
year = {1997},
author = {Duffet, G. A. and O\~{n}ate, E. and Rojek, J. and Z\'arate, F. and
Owen, D. R. J. and Hinton, E.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{Fredo:99:PhD,
author = {Fr\'edo Durand},
title = {3D Visibility: analytical study and applications},
school = {Universit\'e Joseph Fourier, Grenoble I},
year = {1999},
month = {July},
note = {http://www-imagis.imag.fr}
}
@ARTICLE{Dvorkin:1984:CMB,
author = {Dvorkin, E. N. and Bathe, K. J.},
title = {A continuum mechanics based four node shell element for general non-linear
analysis},
journal = {Engineering Computations},
year = {1984},
volume = {1},
pages = {77},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{dyn:personal,
author = {Nira Dyn},
howpublished = {personal communication},
year = {1995},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{dyn87,
author = {Nira Dyn and J. A. Gregory and David Levin},
title = {A Four-Point Interpolatory Subdivision Scheme for Curve Design},
journal = CAGD,
year = {1987},
volume = {4},
pages = {257--268},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{dyn93,
author = {Nira Dyn and Sigalit Hed and David Levin},
title = {Subdivision Schemes for Surface Interpolation},
booktitle = {Workshop in Computational Geometry},
year = {1993},
editor = {A. Conte et al.},
pages = {97--118},
publisher = {World Scientific},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{dynlev94,
author = {Nira Dyn and David Levin},
title = {The Subdivision Experience},
booktitle = {Wavelets, Images and Surface Fitting},
publisher = {A K Peters},
year = {1994},
editor = {P.J. laurent and A. Le M{\'{e}}haut{\'{e}} and L. L. Schumaker},
pages = {229-244},
address = {Wellesley, MA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{dynlev89,
author = {Nira Dyn and David Levin},
title = {Interpolating Subdivision Schemes for the Generation of Curves and
Surfaces},
booktitle = {Multivariate approximation and interpolation (Duisburg, 1989)},
year = {1989},
volume = {94},
series = {Internat. Ser. Numer. Math.},
pages = {91--106},
optpublisher = {Birkhuser, Basel},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{DynLevin90,
author = {Nira Dyn and David Levin and John A. Gregory},
title = {A Butterfly Subdivision Scheme for Surface Interpolation with Tension
Control},
journal = j-TOG,
year = {1990},
volume = {9},
pages = {160--169},
number = {2},
month = {April},
annote = {Special issue on Computer-Aided design --- Part III},
keywords = {general triangulation, subdivision scheme, surface interpolation,
tension control}
}
@ARTICLE{dynlevmic90,
author = {Nira Dyn and David Levin and Charles A. Micchelli},
title = {Using Parameters to Increase Smoothness of Curves and Surfaces Generated
by Subdivision},
journal = CAGD,
year = {1990},
volume = {7},
pages = {129--140},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1991:AES,
author = {Dziuk, G.},
title = {An algorithm for evolutionary surfaces},
journal = {Numer. Math.},
year = {1991},
volume = {58},
pages = {603--611},
number = {6},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1988:FEB,
author = {Dziuk, Gerhard},
title = {Finite elements for the Beltrami operator on arbitrary surfaces},
journal = {Partial differential equations and calculus of variations},
year = {1988},
volume = {1357},
pages = {142--155},
note = {Lecture Notes in Math. Springer Berlin},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1999:DPPa,
author = {Dziuk, Gerhard and Hutchinson, John E.},
title = {The discrete Plateau problem: algorithm and numerics},
journal = {Math. Comp.},
year = {1999},
volume = {68},
pages = {1--23},
number = {225},
note = {0025-5718},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1999:DPPb,
author = {Dziuk, Gerhard and Hutchinson, John E.},
title = {The discrete Plateau problem: convergence results},
journal = {Math. Comp.},
year = {1999},
volume = {68},
pages = {519--546},
number = {226},
note = {0025-5718},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1998:FEA,
author = {Dziuk, Gerhard and Hutchinson, John E.},
title = {Finite element approximations and the Dirichlet problem for surfaces
of prescribed mean curvature},
journal = {Mathematical visualization (Berlin, 1997)},
year = {1998},
pages = {73--87},
note = {Springer Berlin},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1996:AUP,
author = {Dziuk, Gerhard and Hutchinson, John E.},
title = {On the approximation of unstable parametric minimal surfaces},
journal = {Calc. Var. Partial Differential Equations},
year = {1996},
volume = {4},
pages = {27--58},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Dziuk:1994:FEM,
author = {Dziuk, Gerhard and Hutchinson, John E.},
title = {A finite element method for the computation of parametric minimal
surfaces},
journal = {Tatra Mt. Math. Publ.},
year = {1994},
volume = {4},
pages = {49--62},
note = {Equadiff 8 (Bratislava, 1993) 1210-3195},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Eberhardt:2000:IES,
author = {Eberhardt, B. and Etzmuss, O. and Hauth, M.},
title = {Implicit-explicit schemes for fast animation with particle systems},
journal = {Computer Animation and Simulation 2000. Proceedings of the Eleventh
Eurographics Workshop. Eurographics},
year = {2000},
pages = {137-151},
annotation = {Particle systems have been widely employed to animate deformable objects.
In order to achieve real time capable systems, often simplifications
have been made to reduce the computational costs for solving the
ODE at the expense of numerical and physical correctness. Implicit-Explicit
(IMEX) methods provide a way to solve partly stiff systems efficiently,
if the system meets some requirements. These methods allow the solution
of the differential equation for particle systems to be computed
both correctly and very quickly. The authors use an IMEX method to
simulate draping textiles. In particular, the approach does not require
any post-correction and works for very stiff materials.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Eberhardt:1996:AFF,
author = {Bernhard Eberhardt and Andreas Weber and Wolfgang Stra{\ss}er},
title = {A Fast, Flexible Particle-System Model for Cloth Draping},
journal = {IEEE Computer Graphics {\&} Applications},
year = {1996},
volume = {16},
pages = {52--59},
number = {5},
month = sep,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{eck95,
author = {Matthias Eck and Tony DeRose and Tom Duchamp and Hugues Hoppe and
Michael Lounsbery and Werner Stuetzle},
title = {Multiresolution Analysis of Arbitrary Meshes},
booktitle = {Computer Graphics Proceedings},
year = {1995},
series = {Annual Conference Series},
pages = {173--182},
organization = {ACM Siggraph},
optmonth = {August},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Eck95,
author = {Matthias Eck and Tony {DeRose} and Tom Duchamp and Hugues Hoppe and
Michael Lounsbery and Werner Stuetzle},
title = {Multiresolution Analysis of Arbitrary Meshes},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1995},
pages = {173--182},
}
@TECHREPORT{edelman96,
author = {A. Edelman and E. Elmroth and B. K\aa gstr\"{o}m},
title = {A Geometric Approarturbation Theory of Matrices and Matrix Pencils.
Part I: Versal Deformation},
institution = {MIT},
year = {1996},
note = {preprint},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{AspectGraphSurvey,
author = {David Eggert and Kevin Bowyer and Chuck Dyer},
title = {Aspect graphs: State-of-the-art and applications in digital photogrammetry},
booktitle = {Proceedings of the 17th Congress of the International Society for
Photogrammetry and Remote Sensing, Part B5},
year = {1992},
pages = {633--645}
}
@ARTICLE{eigensatz2008cds,
author = {Eigensatz, M. and Sumner, R.W. and Pauly, M.},
title = {{Curvature-Domain Shape Processing}},
journal = j-CGF,
year = {2008},
volume = {27},
pages = {241--250},
number = {2},
organization = {Blackwell Synergy}
}
@INBOOK{Eischen:2000:CVP,
chapter = {Chapter 4, Continuum versus Particle Representations},
title = {Cloth Modeling and Animation},
publisher = {A.K. Peters, Ltd.},
year = {2000},
author = {J.W. Eischen},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{VMV:2007,
author = {Mathias Eitz and Olga Sorkine and Marc Alexa},
title = {Sketch Based Image Deformation},
booktitle = {Proceedings of Vision, Modeling and Visualization (VMV)},
year = {2007},
pages = {135--142}
}
@ARTICLE{Elber:2001:CEI,
author = {Elber, G.},
title = {Curve evaluation and interrogation on surfaces},
journal = {Graphical Models},
year = {2001},
volume = {63},
pages = {197-210},
number = {3},
abstract = {This paper presents a coherent computational framework to efficiently,
and more so robustly, evaluate, interrogate, and compute a whole
variety of characteristic curves on freeform parametric rational
surfaces represented as (piecewise) polynomial or rational functions.
These characteristic curves are expressed as zero sets of bivariate
rational functions and include silhouette curves and isoclines from
a prescribed viewing direction and/or point, reflection lines and
reflection ovals, and highlight lines. This zero set formulation
allows for a better treatment of singular cases while these characteristic
curves are crucial for various applications, from visualization through
interrogation to design and manufacturing.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Anoshkina:2002:AAT,
author = {Elena Anoshkina, Alexander Belyaev, and Hans-Peter Seidel},
title = {Asymptotic Analysis of Three-Point Approximations of Vertex Normals
and Curvatures},
booktitle = {Vision, Modeling, and Visualization 2002},
year = {2002},
pages = {211-216},
address = {Erlangen, Germany},
month = {Nov. 20 - 22},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{elfv:78,
author = {T. Elfving},
title = {On the Conjugate Gradient Method for Solving Linear Least Squares
Problems},
institution = {Link{\"o}ping University},
year = {1978},
type = {{Tech. Report}},
number = {LiTH-MAT-R-78-3},
address = {Sweden},
kwds = {cg, iter}
}
@ARTICLE{Enright:2002:AAR,
author = {Douglas P. Enright and Stephen R. Marschner and Ronald P. Fedkiw},
title = {Animation and Rendering of Complex Water Surfaces},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {736--744},
number = {3},
month = {July},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{Etzmuss:2002:ASA,
author = {Etzmuss, Olaf},
title = {Animation of Surfaces with Applications to Cloth Modelling},
school = {University of T\"{ubinen}},
year = {2002},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Etzmuss:2000:CAP,
author = {Etzmuss, O. and Eberhardt, B. and Strasser, W. and Hauth, M.},
title = {Collision adaptive particle systems},
journal = {Proceedings the Eighth Pacific Conference on Computer Graphics and
Applications},
year = {2000},
pages = {338-453},
annotation = {Particle systems have been widely employed to simulate deformable
objects, most prominently virtual textiles. We introduce particle
systems that adaptively generate new particles wherever this is required
to model collisions correctly. When coarse meshes collide with an
object they are automatically refined. Therefore this model allows
physically accurate simulations that require a much smaller number
of particles than regular particle systems. This allows for fast
simulations with coarse meshes.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Etzmuss:2003:FFE,
author = {Etzmuss, O. and Keckeisen, M. and Strasser, W.},
title = {A fast finite element solution for cloth modelling},
journal = {Proceedings 11th Pacific Conference on Computer Graphics and Applications},
year = {2003},
pages = {244-251},
annotation = {We present an efficient model based on finite elements for viscoelastic,
highly flexible surfaces. It is particularly designed for numerically
stiff materials such as textiles because it yields linear equations
in each time step and allows fast time stepping in an implicit integration
method. This is achieved by reducing the nonlinear elasticity problem
to a planar, linear one in each step. We apply this model to a garment
simulation in which we assemble garments from CAD cloth patterns,
seam these together, and animate the cloth in dynamic scenes with
any chosen material properties. This results in a physically accurate
but also fast simulation.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{evli:89,
author = {D. J. Evans and C. Li},
title = {Numerical Aspects of the Generalized cg-Method Applied to Least Squares
Problems},
journal = {Computing},
year = {1989},
volume = {41},
pages = {171--178},
kwds = {cg, iter}
}
@ARTICLE{evli:88,
author = {D. J. Evans and C. Li},
title = {{Gauss--Seidel} and {SOR} Methods for Least Squares Problems},
journal = {Numer. Math.},
year = {1988},
volume = {53},
pages = {485--498},
kwds = {iter}
}
@INPROCEEDINGS{Evans96,
author = {F. Evans and S. Skiena and A. Varshney},
title = {Optimizing Triangle Strips for Fast Rendering},
booktitle = {Proceedings of the IEEE Visualization},
year = {1996},
editor = {R. Yagel and G. M. Nielson},
pages = {319 - 326}
}
@ARTICLE{Farbman09,
author = {Farbman, Zeev and Hoffer, Gil and Lipman, Yaron and Cohen-Or, Daniel
and Lischinski, Dani},
title = {Coordinates for instant image cloning},
journal = {ACM Trans.\ Graph.},
year = {2009},
volume = {28},
pages = {67:1--67:9},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
}
@BOOK{farin:1992:CAGD,
title = {{Curves and surfaces for computer aided geometric design: a practical
guide}},
publisher = {Academic Press},
year = {1992},
author = {Gerald Farin}
}
@INPROCEEDINGS{Fattal02,
author = {Raanan Fattal and Dani Lischinski and Michael Werman},
title = {Gradient Domain High Dynamic Range Compression},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2002},
pages = {249--256},
bdsk-url-1 = {http://visinfo.zib.de/EVlib/Show?EVL-2002-167},
keywords = {Digital photography, high dynamic range compression,image-based rendering,
image processing, signal processing, tone mapping},
}
@ARTICLE{Faure:2011:SMM,
author = {Faure, Fran\c{c}ois and Gilles, Benjamin and Bousquet, Guillaume
and Pai, Dinesh K.},
title = {Sparse meshless models of complex deformable solids},
journal = {ACM Trans. Graph.},
year = {2011},
volume = {30},
pages = {73:1--73:10},
month = {August},
acmid = {1964968},
address = {New York, NY, USA},
articleno = {73},
issn = {0730-0301},
issue = {4},
issue_date = {July 2011},
keywords = {deformable solid, meshless model, physically based animation},
numpages = {10},
}
@INPROCEEDINGS{Fedkiw:2001:VSO,
author = {Ronald Fedkiw and Jos Stam and Henrik Wann Jensen},
title = {Visual Simulation of Smoke},
booktitle = {Proceedings of {ACM} {SIGGRAPH} 2001},
year = {2001},
pages = {15--22},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{felippa07nfem,
author = {Carlos Felippa},
title = {Nonlinear Finite Element Methods},
howpublished = {\texttt{www.colo\\rado.edu/engineering/CAS/courses.d/NFEM.d/}},
year = {2007},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Felippa:1995:IET,
author = {Felippa, Carlos A. and Haugen, Bjrn and Militello, Carmelo},
title = {From the individual element test to finite element templates: evolution
of the patch test},
journal = {Internat. J. Numer. Methods Engrg.},
year = {1995},
volume = {38},
pages = {199--229},
number = {2},
note = {{\o} 0029-5981},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Fellner:2000:CGR,
author = {Fellner, D. W. and Haber, J. and Havemann, S. and Kobbelt, L. and
Lensch, H. P. A. and Muller, G. and Peter, I. and Schneider, R. and
Seidel, H. P. and Strasser, W.},
title = {Computer graphics research contributing to the development of truly
generalized documents},
journal = {IT+TI Informationstechnik und Technische Informatik},
year = {2000},
volume = {42},
pages = {8-16},
number = {6},
abstract = {This paper presents the research challenges and the contributions
of four projects addressing the three main approaches to integrate
3D graphics into digital documents: the polygon-based approach, where
surfaces of geometric objects are approximated by planar polygons,
the semantic-based approach, where the creation processes of individual
objects are kept accessible for the various visualization tasks through
techniques known as generative modeling, and the lightfield approach,
which allows the display of 3D objects based on a set of 2D images
only, i.e., without a 3D model available to the rendering system.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MASTERSTHESIS{Feynman:1986:MAC,
author = {C. Feynman},
title = {Modeling the Appearance of Cloth},
school = {MIT},
year = {1986},
type = {M{S}c Thesis},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Fiedler73,
author = {M. Fiedler},
title = {Algebraic connectivity of graphs},
journal = {Czech. Math. Journal},
year = {1973},
volume = {23},
pages = {298--305}
}
@MISC{Fingerworks:2005:I,
author = {Fingerworks},
title = {iGesturePad},
year = {2005},
note = { http://www.fingerworks.com/},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{fink94,
author = {Adam Finkelstein and David H. Salesin},
title = {Multiresolution Curves},
booktitle = {Computer Graphics {\em Proceedings, Annual Conference Series}},
year = {1994},
pages = {261--268},
month = {July},
organization = {Siggraph},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{fisher2007dtv,
author = {Fisher, M. and Schr{\"o}der, P. and Desbrun, M. and Hoppe, H.},
title = {{Design of tangent vector fields}},
journal = j-TOG,
year = {2007},
volume = {26},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{fleisch04oversketch,
author = {Timo Fleisch and Florian Rechel and Pedro Santos and Andr\'{e} Stork},
title = {Constraint Stroke-Based Oversketching for 3{D} Curves},
booktitle = {First Eurographics Workshop on Sketch-Based Interfaces and Modeling},
year = {2004},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Fleishman:2003:BMD,
author = {Shachar Fleishman and Iddo Drori and Daniel Cohen-Or},
title = {Bilateral mesh denoising},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {950--953},
number = {3},
bdsk-url-1 = {http://doi.acm.org/10.1145/882262.882368},
}
@ARTICLE{Floater:2003:MVC,
author = {Floater, M. S.},
title = {Mean value coordinates},
journal = {Computer-Aided Geometric Design},
year = {2003},
volume = {20},
pages = {19--27},
number = {1},
abstract = {We derive a generalization of barycentric coordinates which allows
a vertex in a planar triangulation to be expressed as a convex combination
of its neighbouring vertices. The coordinates are motivated by the
Mean Value Theorem for harmonic functions and can be used to simplify
and improve methods for parameterization and morphing.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Floater:1997:PSA,
author = {Floater, M. S.},
title = {Parametrization and smooth approximation of surface triangulations},
journal = {Computer Aided Geometric Design},
year = {1997},
volume = {14},
pages = {231--250},
number = {3},
abstract = {A method based on graph theory is investigated for creating global
parametrizations for surface triangulations for the purpose of smooth
surface fitting. The parametrizations, which are planar triangulations,
are the solutions of linear systems based on convex combinations.
A particular parametrization, called shape-preserving, is found to
lead to visually smooth surface approximations.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Floater:2005:SPT,
author = {Floater, M. S. and Hormann, K.},
title = {Surface parameterization: a tutorial and survey},
journal = {Advances in multiresolution for geometric modelling},
year = {2005},
pages = {157--186},
note = {Math. Vis.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Flu:1969:NDF,
title = {New developments in the finite element analysis of shells},
year = {1969},
author = {Flu, G. E. N. and Lindberg, G. M. and Olson, M. D. and Cowper, G.
R.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{forsey:1988:HBSR,
author = {David Forsey and Richard Bartels},
title = {Hierarchical {B}-Spline Refinement},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1988},
pages = {205--212},
}
@TECHREPORT{forsey-wong,
author = {David Forsey and David Wong},
title = {Multiresolution Surface Reconstruction for Hierarchical {B}-splines},
institution = {University of British Columbia},
year = {1995},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Forstmann:2006:FSA,
author = {Sven Forstmann and Jun Ohya},
title = {Fast Skeletal Animation by skinned Arc-Spline based Deformation},
booktitle = {Proc.\ Eurographics, short papers volume},
year = {2006},
owner = {jacobson},
timestamp = {2011.05.05}
}
@INPROCEEDINGS{Forstmann:2007:DSS,
author = {Forstmann, Sven and Ohya, Jun and Krohn-Grimberghe, Artus and McDougall,
Ryan},
title = {Deformation styles for spline-based skeletal animation},
booktitle = {Proc.\ SCA},
year = {2007},
pages = {141--150},
acmid = {1272710},
numpages = {10},
}
@ARTICLE{Foster:2001:PAO,
author = {Nick Foster and Ronald Fedkiw},
title = {\href{http://graphics.stanford.edu/~fedkiw/papers/stanford2001-02.pdf}{Practical
Animation of Liquids}},
journal = {Proceedings of {SIGGRAPH} 2001},
year = {2001},
pages = {23--30},
annote = {We present a general method for modeling and animating liquids. The
system is specifically designed for computer animation and handles
viscous liquids as they move in a 3D environment and interact with
graphics primitives such as parametric curves and moving polygons.
We combine an appropriately modified semi-Lagrangian method with
a new approach to calculating fluid flow around objects. This allows
us to efficiently solve the equations of motion for a liquid while
retaining enough detail to obtain realistic looking behavior. The
object interaction mechanism is extended to provide control over
the liquid's 3D motion. A high quality surface is obtained from the
resulting velocity field using a novel adaptive technique for evolving
an implicit surface. },
keywords = {animation, computational fluid dynamics, implicit surface, level set,
liquids, natural phenomena, Navier-Stokes, particles, semi-Lagrangian},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Franke82,
author = {R. Franke},
title = {Scattered data interpolation: test of some methods},
journal = {Math Computation},
year = {1982},
volume = {38},
pages = {181--200}
}
@INPROCEEDINGS{FrankeNielson:91,
author = {R. Franke and G. M. Nielson},
title = {Scattered data interpolation and applications: A tutorial and survey},
booktitle = {Geometric Modelling, Methods and Applications},
year = {1991},
editor = {H. Hagen and D. Roller},
pages = {131--160},
publisher = {Springer Verlag}
}
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author = {R. Freund},
title = {A Note on Two Block {SOR} Methods for Sparse Least Squares Problems},
journal = {Linear Algebra Appl.},
year = {1987},
volume = {88/89},
pages = {211--221},
kwds = {iter}
}
@INPROCEEDINGS{Frisken00,
author = {Sarah F. Frisken and Ronald N. Perry and Alyn P. Rockwood and Thouis
R. Jones},
title = {Adaptively Sampled Distance Fields: {A} General Representation of
Shape for Computer Graphics},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {249--254}
}
@ARTICLE{DBLP:journals/cgf/FrohlichB11,
author = {Stefan Fr{\"o}hlich and Mario Botsch},
title = {Example-Driven Deformations Based on Discrete Shells},
journal = {Comput.\ Graph.\ Forum},
year = {2011},
volume = {30},
pages = {2246--2257},
number = {8},
bibsource = {DBLP, http://dblp.uni-trier.de},
ee = {http://dx.doi.org/10.1111/j.1467-8659.2011.01974.x}
}
@ARTICLE{Fu:2007,
author = {Hongbo Fu and Oscar Kin-Chung Au and Chiew-Lan Tai},
title = {Effective derivation of similarity transformations for implicit {L}aplacian
mesh editing},
journal = j-CGF,
year = {2007},
volume = {21},
pages = {34--45},
number = {1},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Fu04,
author = {Hongbo Fu and Chiew-Lan Tai and Hongxin Zhang},
title = {Topology-free cut-and-paste editing over meshes},
booktitle = {Proc.\ Geom.\ Model.\ and Proc.},
year = {2004},
pages = {173--182}
}
@ARTICLE{Funck2006,
author = {Wolfram von Funck and Holger Theisel and Hans-Peter Seidel},
title = {Vector field based shape deformations},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {1118--1125},
number = {3},
owner = {mbotsch},
timestamp = {2006.11.16}
}
@ARTICLE{Funkhouser04,
author = {Thomas Funkhouser and Michael Kazhdan and Philip Shilane and Patrick
Min and William Kiefer and Ayellet Tal and Szymon Rusinkiewicz and
David Dobkin},
title = {Modeling by example},
journal = {ACM Trans.\ Graph.},
year = {2004},
volume = {23},
pages = {652--663},
number = {3}
}
@ARTICLE{Kirchhoff:1850:UGB,
author = {G.Kirchhoff},
title = { {\"U}ber das {G}leichgewicht und die {B}ewegung einer elastichen
{S}cheibe},
journal = {Crelles J.},
year = {1850},
volume = {40},
pages = {51--88},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Feature-Aware06,
author = {Ran Gal and Olga Sorkine and Daniel Cohen-Or},
title = {Feature-aware texturing},
booktitle = {Proceedings of Eurographics Symposium on Rendering},
year = {2006},
pages = {297--303}
}
@INPROCEEDINGS{Collage3D:2007,
author = {Ran Gal and Olga Sorkine and Tiberiu Popa and Alla Sheffer and Daniel
Cohen-Or},
title = {3D Collage: Expressive Non-Realistic Modeling},
booktitle = {NPAR: Proceedings of the 5th International Symposium on Non-Photorealistic
Animation and Rendering},
year = {2007},
pages = {7--14},
}
@INPROCEEDINGS{Collage3D:2006,
author = {Ran Gal and Olga Sorkine and Tiberiu Popa and Alla Sheffer and Daniel
Cohen-Or},
title = {Non-Realistic Expressive Modeling},
booktitle = {ACM SIGGRAPH 2006, Technical Sketches},
year = {2006}
}
@ARTICLE{Garanzha:2005:QIS,
author = {Garanzha, V. A.},
title = {Quasi-isometric surface parameterization},
journal = {Applied Numerical Mathematics},
year = {2005},
volume = {55},
pages = {295--311},
number = {3},
abstract = {Parameterization of surface is defined by a one-to-one mapping from
a planar domain to the surface. Well established methods based on
harmonic, conformal and quasi-conformal mappings may create parameterizations
with singularities. Singularity-free parameterization technique is
suggested based on the concept of quasi-isometric mappings. Well-posed
variational formulations for quasi-isometric parameterizations are
discussed based on existence theory for hyperelasticity. Distortion
minimization, invariance and mesh independence are discussed with
numerical examples. [All rights reserved Elsevier].},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{garg2007cs,
author = {Garg, A. and Grinspun, E. and Wardetzky, M. and Zorin, D.},
title = {{Cubic shells}},
journal = {Proceedings of the 2007 ACM SIGGRAPH/Eurographics symposium on Computer
animation},
year = {2007},
pages = {91--98},
owner = {sorkine},
publisher = {Eurographics Association Aire-la-Ville, Switzerland, Switzerland},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Garland1999,
author = {Michael Garland},
title = {Multiresolution Modeling: Survey \& future opportunities},
booktitle = {Eurographics State of the Art Report},
year = {1999},
owner = {mbotsch},
timestamp = {2007.03.23}
}
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author = {Z. Ge and H. P. Kruse and J. E. Marsden},
title = {The Limits of Hamiltonian Structures in Three-Dimensional Elasticity,
Shells, and Rods},
journal = {Journal of Nonlinear Science},
year = {1996},
volume = {6},
pages = {19--57},
owner = {sorkine},
timestamp = {2008.10.27}
}
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author = {J. A. George and M. T. Heath},
title = {Solution of Sparse Linear Least Squares Problems Using {Givens} Rotations},
journal = {Linear Algebra Appl.},
year = {1980},
volume = {34},
pages = {69--83},
kwds = {sparse, qrd, rot}
}
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author = {J. A. George and M. T. Heath and E. G. Ng},
title = {A Comparison of Some Methods for Solving Sparse Linear Least Squares
Problems},
journal = {SIAM J. Sci. Statist. Comput.},
year = {1983},
volume = {4},
pages = {177--187},
kwds = {sparse, test}
}
@ARTICLE{gehp:81,
author = {J. A. George and M. T. Heath and R. J. Plemmons},
title = {Solution of Large-Scale Sparse Least Squares Problems Using Auxiliary
Storage},
journal = {SIAM J. Sci. Statist. Comput.},
year = {1981},
volume = {2},
pages = {416--429},
kwds = {sparse, qrd}
}
@ARTICLE{geli:87,
author = {J. A. George and J. W.-H. Liu},
title = {{Householder} Reflections versus {Givens} Rotations in Sparse Orthogonal
Decomposition},
journal = {Linear Algebra Appl.},
year = {1987},
volume = {88/89},
pages = {223--238},
kwds = {sparse, rot, qrd}
}
@ARTICLE{geln:88,
author = {J. A. George and J. W.-H. Liu and E. G. Ng},
title = {A Data Structure for Sparse {QR and LU} Factorization},
journal = {SIAM J. Sci. Statist. Comput.},
year = {1988},
volume = {9},
pages = {100--121},
kwds = {sparse, qrd, lud}
}
@ARTICLE{geln:86,
author = {J. A. George and J. W.-H. Liu and E. G. Ng},
title = {Row Ordering Schemes for Sparse {Givens} Transformations, {II.} {Implicit}
Graph Model},
journal = {Linear Algebra Appl.},
year = {1986},
volume = {75},
pages = {203--223},
kwds = {sparse, perm, rot}
}
@ARTICLE{geln:84,
author = {J. A. George and J. W.-H. Liu and E. G. Ng},
title = {Row Ordering Schemes for Sparse {Givens} Transformations, {I.} {Bipartite}
Graph Model},
journal = {Linear Algebra Appl.},
year = {1984},
volume = {61},
pages = {55--81},
kwds = {sparse, perm, rot}
}
@ARTICLE{geln:86a,
author = {J. A. George and J. W.-H. Liu and E. G. Ng},
title = {Row Ordering Schemes for Sparse {Givens} Transformations, {III.}
{Analysis} for a Model Problem},
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year = {1984},
volume = {75},
pages = {225--240},
kwds = {sparse, perm, rot}
}
@ARTICLE{geng:88,
author = {J. A. George and E. G. Ng},
title = {On the Complexity of Sparse {QR and LU} Factorization of Finite-Element
Matrices},
journal = {SIAM J. Sci. Statist. Comput.},
year = {1988},
volume = {9},
pages = {849--861},
kwds = {sparse, qrd, lud}
}
@ARTICLE{geng:86,
author = {J. A. George and E. G. Ng},
title = {Orthogonal Reduction of Sparse Matrices to Upper Triangular Form
Using {H}ouseholder Transformations},
journal = {SIAM J. Sci. Statist. Comput.},
year = {1986},
volume = {7},
pages = {460--472},
kwds = {sparse, qrd}
}
@ARTICLE{geng:83,
author = {J. A. George and E. G. Ng},
title = {On Row and Column Orderings for Sparse Least Squares Problems},
journal = {SIAM J. Numer. Anal.},
year = {1983},
volume = {20},
pages = {326--344},
kwds = {sparse, perm, rot}
}
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title = { Recherches sur la theorie de surfaces elastiques},
publisher = {Mme. V. Courcier},
year = {1821},
author = {S. Germain},
address = {Paris},
owner = {sorkine},
timestamp = {2008.10.27}
}
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author = {J. R. Gilbert and E. G. Ng and B. W. Peyton},
title = {Separators and Structure Prediction in Sparse Orthogonal Factorization},
journal = {Linear Algebra Appl.},
year = {1997},
volume = {262},
pages = {83--97},
kwds = {sparse, qrd}
}
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author = {P. E. Gill and W. Murray},
title = {The Orthogonal Factorization of a Large Sparse Matrix},
booktitle = {Sparse Matrix Computations},
year = {1976},
editor = {J. R. Bunch and D. J. Rose},
pages = {201--212},
publisher = {Academic Press, New York},
kwds = {sparse, qrd}
}
@ARTICLE{A-GilBouFauPai11,
author = {Benjamin Gilles and Guillaume Bousquet and Fran\c{c}ois Faure and
Dinesh Pai},
title = {Frame-based Elastic Models},
journal = j-TOG,
year = {2011},
volume = {30},
number = {2},
month = avr,
codepage = {Article 15}
}
@MISC{gingold07spore,
author = {Chaim Gingold},
title = {{SPORE}'s Magic Crayons},
howpublished = {Game Developers Conference},
year = {2007},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{gingold2006dtp,
author = {Gingold, Y.I. and Davidson, P. and Han, J. and Zorin, D.},
title = {{A Direct Texture Placement and Editing Interface}},
journal = {Proceedings of the 19th annual ACM symposium on User interface software
and technology},
year = {2006},
pages = {23--32},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{UIST06,
author = {Yotam Gingold and Philip Davidson and Jefferson Han and Denis Zorin},
title = {A Direct Texture Placement and Editing Interface},
booktitle = {Proceedings of he 19th Annual ACM Symposium on User Interface Software
and Technology (UIST06)},
year = {2006},
pages = {to appear},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Gingold:2008:SSE,
author = {Yotam Gingold and Denis Zorin},
title = {Shading-based surface editing},
journal = j-TOG,
year = {2008},
volume = {27},
pages = {1--9},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
}
@PHDTHESIS{Gleicher:1994:DAG,
author = {Michael Gleicher},
title = {A Differential Approach to Graphical Manipulation (Chapter 5)},
year = {1994},
institution = {Carnegie Mellon University},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{GlowinskiP79,
author = {Glowinski, R. and Pironneau, O.},
title = {Numerical methods for the first biharmonic equation and the two-dimensional
{S}tokes problem},
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volume = {21},
pages = {167--212},
number = {2},
coden = {SIREAD},
fjournal = {SIAM Review. A Publication of the Society for Industrial and Applied
Mathematics},
issn = {0036-1445},
mrclass = {65N30 (76D99)},
mrnumber = {MR524511 (80e:65101)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{goel-diamond-02,
author = {Mukul S. Goel and Scott L. Diamond},
title = {Adhesion of normal erythrocytes at depressed venous shear rates to
activated neutrophils, activated platelets and fibrin plymerized
from plasma},
journal = {Blood},
year = {2002},
volume = {100},
number = {10},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Goldfeather:2004:NCA,
author = {Jack Goldfeather and Victoria Interrante},
title = {A novel cubic-order algorithm for approximating principal direction
vectors},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {45--63},
number = {1},
month = jan,
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{GolubVa96,
title = {Matrix Computations},
publisher = {Johns Hopkins University Press},
year = {1996},
author = {Gene~H. Golub and Charles~F. Van~Loan},
edition = {3rd}
}
@BOOK{gooch01npr,
title = {Non-Photorealistic Rendering},
publisher = {A.K. Peters},
year = {2001},
author = {Bruce Gooch and Amy Gooch},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INCOLLECTION{goodman94,
author = {Goodman, T. N. T. and Micchell, C. A. and Ward J. D.},
title = {Spectral radius formulas for subdivision operators},
booktitle = {Recent Advances in Wavelet Analysis},
publisher = {Academic Press},
year = {1994},
editor = {L. L. Schumaker and G. Webb},
pages = {335-360},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{gort95,
author = {Steven J. Gortler and Michael F. Cohen},
title = {Hierarchical and Variational Geometric Modeling with Wavelets},
booktitle = {Proceedings Symposium on Interactive 3D Graphics},
year = {1995},
month = {May},
organization = {Siggraph},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{SphericalParam03,
author = {Craig Gotsman and Xianfeng Gu and Alla Sheffer},
title = {Fundamentals of spherical parameterization for 3{D} meshes},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {358--363},
number = {3},
}
@INPROCEEDINGS{GotsmanGumhold:2001,
author = {C. Gotsman and S. Gumhold and L. Kobbelt},
title = {Simplification and compression of 3{D} meshes },
booktitle = { Proceedings of the European summer school on Principles of Multiresolution
in Geometric Modeling (PRIMUS), Munich},
year = {2001}
}
@ARTICLE{Govindaraju:2005:QCF,
author = {Govindaraju, N. K. and Lin, M. C. and Manocha, D.},
title = {Quick-CULLIDE: fast inter- and intra-object collision culling using
graphics hardware},
journal = {IEEE Virtual Reality 2005 (IEEE Cat. No.05CH37649)},
year = {2005},
pages = {59-66},
annotation = {We present a fast collision culling algorithm for performing inter-and
intra-object collision detection among complex models using graphics
hardware. Our algorithm is based on CULLIDE (Govindaraju et al.,
2003) and performs visibility queries on the GPUs to eliminate a
sub-set of geometric primitives that are not in close proximity.
We present an extension to CULLIDE to perform intra-object or self-collisions
between complex models. Furthermore, we describe a novel visibility-based
classification scheme to compute potentially-colliding and collision-free
subsets of objects and primitives, which considerably improves the
culling performance. We have implemented our algorithm on a PC with
an NVIDIA GeForce FX 6800 Ultra graphics card and applied it to three
complex simulations, each consisting of objects with tens of thousands
of triangles. In practice, we are able to compute all the self-collisions
for cloth simulation up to image-space precision at interactive rates.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{grochenig96,
author = {Gr\"ochenig, K. and Cohen, A. and Villemoes, L.},
title = {Regularity of multivariate refinable functions},
institution = {Royal Institute of Technology, Sweden},
year = {1996},
type = {preprint},
note = {to appear in Constructive Approximation},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{grasedyck2003caa,
author = {Grasedyck, L. and Hackbusch, W.},
title = {{Construction and Arithmetics of H-Matrices}},
journal = {Computing},
year = {2003},
volume = {70},
pages = {295--334},
number = {4},
publisher = {Springer}
}
@ARTICLE{Gravesen:2002:CIF,
author = {Gravesen, J. and Ungstrup, M.},
title = {Constructing invariant fairness measures for surfaces},
journal = {Advances in Computational Mathematics},
year = {2002},
volume = {17},
pages = {67-88},
number = {1-2},
abstract = {The paper proposes a rational method to derive fairness measures for
surfaces. It works in cases where isophotes, reflection lines, planar
intersection curves, or other curves are used to judge the fairness
of the surface. The surface fairness measure is derived by demanding
that all the given curves should be fair with respect to an appropriate
curve fairness measure. The method is applied to the field of ship
hull design where the curves are plane intersections. The method
is extended to the case where one considers, not the fairness of
one curve, but the fairness of a one parameter family of curves.
Six basic third order invariants by which the fairing measures can
be expressed are defined. Furthermore, the geometry of a plane intersection
curve is studied, and the variation of the total, the normal, and
the geodesic curvature and the geodesic torsion is determined.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Gray,
title = {Modern Differential Geometry of Curves and Surfaces},
publisher = {CRC Press},
year = {1998},
author = {Alfred Gray},
series = {Second edition},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Green:2002:SBM,
author = {Seth Green and George Turkiyyah and Duane Storti},
title = {Subdivision-Based Multilevel Methods for Large Scale Engineering
Simulation of Thin Shells},
booktitle = {Proceedings of {ACM} Solid Modeling},
year = {2002},
pages = {265--272},
opttitle = {\href{http://students.washington.edu/sgreen/docs/sm02-107-green.pdf}{Subdivision-Based
Multilevel Methods for Large Scale Engineering Simulation of Thin
Shells}},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{G:1973:DM,
title = {Discrete Models},
publisher = {Addison-Wesley},
year = {1973},
author = {Donald Greenspan},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Gregory:1989:ACP,
author = {Gregory, J. A. and Hahn, J. M.},
title = {A {$C^2$} polygonal surface patch},
journal = {Comput. Aided Geom. Design},
year = {1989},
volume = {6},
pages = {69--75},
number = {1},
coden = {CAGDEX},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
mrclass = {65D05 (65D10 68U05)},
mrnumber = {MR983472 (90f:65017)},
mrreviewer = {Otto R{\"o}schel},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Gregory:1994:FPH,
author = {Gregory, John A. and Zhou, Jianwei},
title = {Filling polygonal holes with bicubic patches},
journal = {Comput. Aided Geom. Design},
year = {1994},
volume = {11},
pages = {391--410},
number = {4},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Greiner95,
author = {G. Greiner},
title = {Blending Surfaces with Minimal Curvature},
booktitle = {Graphics and Robotics},
year = {1995},
pages = {163--174},
address = {London, UK},
publisher = {Springer-Verlag},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Greiner1994,
author = {G{\"u}nther Greiner},
title = {Variational Design and Fairing of Spline Surfaces},
journal = j-CGF,
year = {1994},
volume = {13},
pages = {143--154},
number = {3},
owner = {mario},
timestamp = {2006.10.28}
}
@ARTICLE{Greiner1996,
author = {G{\"u}nther Greiner and Joachim Loos},
title = {Data Dependent Thin Plate Energy and its use in Interactive Surface
Modeling},
journal = j-CGF,
year = {1996},
volume = {15},
pages = {175--185},
number = {3},
owner = {mario},
timestamp = {2006.10.28}
}
@INPROCEEDINGS{GrembanMiZa95,
author = {K.D. Gremban and G.L. Miller and M. Zagha},
title = {Performance Evaluation of a Parallel Preconditioner},
booktitle = {9th International Parallel Processing Symposium},
year = {1995},
pages = {65--69},
address = {Santa Barbara},
month = {April},
organization = {IEEE}
}
@PHDTHESIS{Gremban96,
author = {Keith~D. Gremban},
title = {Combinatorial Preconditioners for Sparse, Symmetric, Diagonally Dominant
Linear Systems},
school = {School of Computer Science, Carnegie Mellon University},
year = {1996}
}
@INPROCEEDINGS{Grimm:2002:SMF,
author = {Cindy M. Grimm},
title = {Simple manifolds for surface modeling and parameterization},
booktitle = p-SMI,
year = {2002},
}
@INPROCEEDINGS{Grimm:2003:PNT,
author = {Cindy M. Grimm and John F. Hughes},
title = {Parameterizating N-holed tori},
booktitle = {The Mathematics of Surfaces IX},
year = {2003},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Grimm:1995:MSO,
author = {Cindy M. Grimm and John F. Hughes},
title = {Modeling Surfaces of Arbitrary Topology using Manifolds},
booktitle = {Proceedings of SIGGRAPH 95},
year = {1995},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {359--368},
month = aug,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{ddgcourse:2006,
author = {Eitan Grinspun and Mathieu Desbrun and Konrad Polthier and Peter
Schr\"oder and Ari Stern},
title = {Discrete Differential Geometry: An Applied Introduction},
booktitle = {ACM SIGGRAPH 2006 Courses},
year = {2006}
}
@ARTICLE{Grinspun2006,
author = {Eitan Grinspun and Yotam Gingold and Jason Reisman and Denis Zorin},
title = {Computing discrete shape operators on general meshes},
journal = j-CGF,
year = {2006},
volume = {25},
pages = {3},
number = {3},
owner = {mario},
timestamp = {2006.11.05}
}
@ARTICLE{Grinspun:2003:DS,
author = {Grinspun, E. and Hirani, A. N. and Desbrun, M. and Schr\"{o}der,
P.},
title = {Discrete shells},
journal = {ACM SIGGRAPH/Eurographics Symposium on Computer Animation},
year = {2003},
pages = {62-67},
annotation = {In this paper we introduce a discrete shell model describing the behavior
of thin flexible structures, such as hats, leaves, and aluminum cans,
which are characterized by a curved undeformed configuration. Previously
such models required complex continuum mechanics formulations and
correspondingly complex algorithms. We show that a simple shell model
can be derived geometrically for triangle meshes and implemented
quickly by modifying a standard cloth simulator. Our technique convincingly
simulates a variety of curved objects with materials ranging from
paper to metal, as we demonstrate with several examples including
a comparison of a real and simulated falling hat.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Grinspun:2002:CAS,
author = {Eitan Grinspun and Petr Krysl and Peter Schr{\"{o}}der},
title = {CHARMS: A Simple Framework for Adaptive Simulation},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {281--290},
number = {3},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Grosse-Brauckmann:1996:NEC,
author = {Grosse-Brauckmann, Karsten and Polthier, Konrad},
title = {Numerical examples of compact surfaces of constant mean curvature},
journal = {Elliptic and parabolic methods in geometry (Minneapolis, MN, 1994)},
year = {1996},
pages = {23--46},
note = {A K Peters Wellesley, MA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Gu:2002:GI,
author = {Gu, X. and Gortler, S. J. and Hoppe, H.},
title = {Geometry images},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {355--361},
number = {3},
abstract = {Surface geometry is often modeled with irregular triangle meshes.
The process of remeshing refers to approximating such geometry using
a mesh with (semi)-regular connectivity, which has advantages for
many graphics applications. However, current techniques for remeshing
arbitrary surfaces create only semi-regular meshes. The original
mesh is typically decomposed into a set of disk-like charts, onto
which the geometry is parametrized and sampled. In this paper, we
propose to remesh an arbitrary surface onto a completely regular
structure we call a geometry image. It captures geometry as a simple
2D array of quantized points. Surface signals like normals and colors
are stored in similar 2D arrays using the same implicit surface parametrization
- texture coordinates are absent. To create a geometry image, we
cut an arbitrary mesh along a network of edge paths, and parametrize
the resulting single chart onto a square. Geometry images can be
encoded using traditional image compression algorithms, such as wavelet-based
coders.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{gu2008mss,
author = {Gu, X. and He, Y. and Jin, M. and Luo, F. and Qin, H. and Yau, S.T.},
title = {{Manifold splines with a single extraordinary point}},
journal = {Computer-Aided Design},
year = {2008},
volume = {40},
pages = {676--690},
number = {6},
owner = {sorkine},
publisher = {Elsevier},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{GuHJLQY07,
author = {X. Gu and Y. He and M. Jin and F. Luo and H. Qin and S.-T. Yau},
title = {Manifold splines with single extraordinary point},
booktitle = {SPM '07: Proceedings of the 2007 ACM symposium on Solid and physical
modeling},
year = {2007},
pages = {61--72},
address = {New York, NY, USA},
location = {Beijing, China},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{GuHQ05,
author = {X. Gu and Y. He and H. Qin},
title = {Manifold splines},
booktitle = {SPM '05: Proceedings of the 2005 ACM symposium on Solid and physical
modeling},
year = {2005},
pages = {27--38},
address = {New York, NY, USA},
location = {Cambridge, Massachusetts},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Gu:2003:CCS,
author = {Xianfeng Gu and Shing-Tung Yau},
title = {Global conformal surface parameterization},
booktitle = {Proceedings of the Eurographics/ACM SIGGRAPH symposium on Geometry
processing},
year = {2003},
pages = {127--137},
publisher = {Eurographics Association},
location = {Aachen, Germany},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Gu:2002:CCS,
author = {Gu, Xianfeng and Yau, Shing-Tung},
title = {Computing conformal structures of surfaces},
journal = {Commun. Inf. Syst.},
year = {2002},
volume = {2},
pages = {121--145},
number = {2},
fjournal = {Communications in Information and Systems},
issn = {1526-7555},
mrclass = {65D18 (53A05 58A12 65D17 68U05)},
mrnumber = {2003m:65023},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{GuatteryMi2000,
author = {Stephen Guattery and Gary~L. Miller},
title = {Graph Embeddings and {L}aplacian Eigenvalues},
journal = {SIAM Journal on Matrix Analysis and Applications},
year = {2000},
volume = {21},
pages = {703--723},
number = {3}
}
@BOOK{Guggenheimer,
title = {Differential Geometry},
publisher = {McGraw--Hill, New York},
year = {1963},
author = {Heinrich W. Guggenheimer}
}
@ARTICLE{Guiard:1987:ADL,
author = {Guiard, Y.},
title = {Asymmetric division of labor in human skilled bimanual action: The
kinetic chain as a model},
journal = {The Journal of Motor Behavior},
year = {1987},
volume = {19},
pages = {486--517},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Guid:1995:SIM,
author = {Guid, N. and Oblonsek, C. and Zalik, B.},
title = {Surface interrogation methods},
journal = {Computers \& Graphics},
year = {1995},
volume = {19},
pages = {557-574},
number = {4},
abstract = {The paper deals with an overview and analysis of methods for inspecting
surface quality. The overview is done by a new classification based
on common mathematical concepts yielding four groups of methods.
Techniques based on curvature, such as colour-coded maps, lines of
curvature, isolines of curvature, and focal surfaces are considered.
They are followed by methods based on illumination models such as
isophotes, lv-curves, reflection lines, highlight lines, and shaded-image
rendering. Then, methods using special linear transformations are
included: polar and orthonomic surfaces. The final method is that
of contour lines. The results of a comparative analysis of all considered
methods, such as their suitability for determining continuities,
inflection points, and convex/concave regions, their speed, sensitivity
to surface changes, and invariance to geometric transformations,
which could be very interesting and useful for a user, are presented.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{Gumhold-2000-NewBounds,
author = {Stefan Gumhold},
title = {New Bounds on The Encoding of Planar Triangulations},
institution = {Wilhelm-Schickard-Institut f{\"u}r Informatik, University of T{\"u}bingen,
Germany},
year = {2000},
type = {Technical Report},
number = {WSI--2000--1},
month = {January},
keywords = {GRIS}
}
@INPROCEEDINGS{Gumhold-2003-Higher,
author = {Stefan Gumhold and Rachida Amjoun},
title = {Higher Order Prediction for Geometry Compression},
booktitle = {International Conference On Shape Modelling And Applications},
year = {2003},
pages = {59--66}
}
@INPROCEEDINGS{Gumhold:1998,
author = {Stefan Gumhold and Wolfgang Stra{\ss}er},
title = {Real Time Compression of Triangle Mesh Connectivity},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1998},
pages = {133--140},
}
@ARTICLE{Guo:2009:IRU,
author = {Guo, Yanwen and Liu, Feng and Shi, Jian and Zhou, Zhi-Hua and Gleicher,
Michael},
title = {Image retargeting using mesh parametrization},
journal = {Trans. Multi.},
year = {2009},
volume = {11},
pages = {856--867},
number = {5},
month = aug,
acmid = {1653040},
address = {Piscataway, NJ, USA},
issn = {1520-9210},
issue_date = {August 2009},
keywords = {attention model, image retargeting, mesh parametrization},
numpages = {12},
publisher = {IEEE Press},
}
@ARTICLE{Guo:2005:NCT,
author = {Guo, Y. and Wang, J. and Sun, H. and Cui, X. and Peng, Q.},
title = {A novel constrained texture mapping method based on harmonic map},
journal = {Computers and Graphics},
year = {2005},
volume = {29},
pages = {972--979},
number = {6},
abstract = {In this paper, we present a novel constrained texture mapping method
based on the harmonic map. We first project the surface of a 3D model
on a planar domain by an angle-based-flattening technique and perform
a parametrization. The user then specifies interactively the constraints
between the selected feature points on the parametric domain of the
3D model and the corresponding pixels on the texture image; the texture
coordinates of other sample points on the 3D model are determined
based on harmonic mapping between the parametric domain of the model
and the texture image; finally we apply an adaptive local mapping
refinement to improve the rendering result in real-time. Compared
with other interactive methods, our method provides an analytically
accurate solution to the problem, and the energy minimization characteristic
of the harmonic map reduces the potential distortion that may result
in the constrained texture mapping. Experimental data demonstrate
good rendering effects generated by the presented algorithm. [All
rights reserved Elsevier].},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{guskov:1999:MSPM,
author = {Igor Guskov and Wim Sweldens and Peter Schr{\"o}der},
title = {Multiresolution Signal Processing for Meshes},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1999},
pages = {325--334}
}
@INPROCEEDINGS{NormalMeshes,
author = {Igor Guskov and Kiril Vidim\u{c}e and Wim Sweldens and Peter Schr\"{o}der},
title = {Normal meshes},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {95--102}
}
@ARTICLE{Gustafsson78,
author = {I. Gustafsson},
title = {A class of first-order factorization methods},
journal = {BIT},
year = {1978},
volume = {18},
pages = {142--156}
}
@INPROCEEDINGS{Guy:1995:CBF,
author = {Andrew Guy and Brian Wyvill},
title = {Controlled Blending for Implicit Surfaces using a Graph},
booktitle = {Proceedings of Implicit Surfaces '95: the First {E}urographics Workshop
on Implicit Surfaces},
year = {1995},
editor = {M-P. Gascuel and B. Wyvill},
pages = {107--112},
month = {April},
organization = {Eurographics Association},
location = {Grenoble, France}
}
@UNPUBLISHED{habib96,
author = {Ayman Habib and Joe Warren},
title = {Edge and Vertex Insertion for a Class of Subdivision Surfaces},
note = {Preprint. Computer Science, Rice University},
year = {1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Hadap:1999:AWO,
author = {Sunil Hadap and Endre Bangarter and Pascal Volino and Nadia Magnenat-Thalmann},
title = {Animating Wrinkles on Clothes},
booktitle = {IEEE Visualization '99},
year = {1999},
pages = {175--182},
month = oct,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hagen:1992:SIA,
author = {Hagen, H. and Hahmann, S. and Schreiber, T. and Nakajima, Y. and
Wordenweber, B. and Hollemann-Grundstedt, P.},
title = {Surface interrogation algorithms},
journal = {IEEE Computer Graphics and Applications},
year = {1992},
volume = {12},
pages = {53-60},
number = {5},
abstract = {Various visualization techniques that identify unwanted curvature
regions, such as inflection points and dents, are reviewed. Orthotomics
for the convexity test, isophotes for the geometric continuity test
for the boundaries of a patchwork, reflection lines for the aesthetic
quality of a surface, and local surfaces for the detection of undesired
curvature situations on a surface are discussed.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Hagen:1988:CCT,
author = {Hagen, H. and Pottmann, H.},
title = {Curvature continuous triangular interpolants},
booktitle = {Mathematical methods in computer aided geometric design (Oslo, 1988)},
publisher = {Academic Press},
year = {1989},
pages = {373--384},
address = {Boston, MA},
mrclass = {65D05},
mrnumber = {MR1022719 (90k:65027)},
mrreviewer = {J. Hoschek},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hager:1989:UIM,
author = {Hager, W. W.},
title = {Updating the inverse of a matrix},
journal = {SIAM Review},
year = {1989},
volume = {31},
pages = {221--239},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Halstead:1996:RCS,
author = {Halstead, M. A. and Barsky, B. A. and Klein, S. A. and Mandell, R.
B.},
title = {Reconstructing curved surfaces from specular reflection patterns
using spline surface fitting of normals},
journal = {Computer Graphics Proceedings. SIGGRAPH '96},
year = {1996},
pages = {335-342},
abstract = {We present an algorithm that reconstructs a three-dimensional surface
model from an image. The image is generated by illuminating a specularly
reflective surface with a pattern of light. We discuss the application
of this algorithm to an important problem in biomedicine, namely
the measurement of the human cornea, although the algorithm is also
applicable elsewhere. The distinction between this reconstruction
technique and more traditional techniques that use light patterns
is that the image is formed by specular reflection. Therefore, the
reconstruction algorithm fits a surface to a set of normals rather
than to a set of positions. Furthermore, the normals do not have
prescribed surface positions. We show that small surface details
can be recovered more accurately using this approach. The results
of the algorithm are used in an interactive visualization of the
cornea.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{halstead93,
author = {M. Halstead and M. Kass and T. DeRose},
title = {Efficient, Fair Interpolation using {C}atmull-{C}lark Surfaces},
booktitle = {Computer Graphics Proceedings},
year = {1993},
series = {Annual Conference Series},
pages = {35--44},
organization = {ACM Siggraph},
annote = {Modify Catmull-Clark to make it interpolating. Little in terms of
proofs and requires global linear systems. Fairing is done over rather
large point sets and normal conditions are mentioned but never actually
used... Interpolation constraints can only given on the once subdivided
mesh, and interpolation only occurs in the limit.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hampshire:1992:TNT,
author = {Hampshire, J. K. and Topping, B. H. V. and Chan, H. C.},
title = {Three node triangular elements with one degree of freedom per node},
journal = {Engineering Computations},
year = {1992},
volume = {9},
pages = {49},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{HanOvertonYu:Hermite,
author = {B. Han and M. Overton and T. P.-Y. Yu},
title = {Design of {H}ermite Subdivision Schemes Aided by Spectral Radius
Optimization},
journal = {SIAM Journal on Scientific Computing},
year = {2003},
volume = {25},
pages = {643--656},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{HanYu:Face,
author = {B. Han and T. P.-Y. Yu},
title = {Face-based {H}ermite Subdivision Schemes},
journal = {Journal of Concrete and Applicable Mathematics},
year = {2006},
volume = {4},
pages = {435-450},
number = {4},
note = {Special issue in Wavelets and Applications},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{HanYuXue:Hermite,
author = {B. Han and T. P.-Y. Yu and Y. Xue},
title = {Non-Interpolatory {H}ermite Subdivision Schemes},
journal = {Mathematics of Computation},
year = {2005},
volume = {74},
pages = {1345-1367},
number = {251},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Han:2005:LCM,
author = {Jefferson Y. Han},
title = {Low-cost multi-touch sensing through frustrated total internal reflection},
booktitle = {UIST '05: Proceedings of the 18th annual ACM symposium on User interface
software and technology},
year = {2005},
pages = {115--118},
address = {New York, NY, USA},
location = {Seattle, WA, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Han:1999:PMT,
title = {Plasticity},
publisher = {Springer-Verlag},
year = {1999},
author = {Han, Weimin and Reddy, B. Daya},
volume = {9},
pages = {xiv+371},
series = {Interdisciplinary Applied Mathematics},
address = {New York},
note = {Mathematical theory and numerical analysis},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Hanrahan:1990:DWP,
author = {Hanrahan, P. and Haeberli, P.},
title = {Direct {WYSIWYG} painting and texturing on 3{D} shapes},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {1990},
pages = {215--223},
abstract = {The paper describes a 3D object-space paint program. This program
allows the user to directly manipulate the parameters used to shade
the surface of the 3D shape by applying pigment to its surface. The
pigment has all the properties normally associated with material
shading models. This includes, but is not limited to, the diffuse
color, the specular color and the surface roughness. The pigment
also can have thickness, which is modeled by simultaneously creating
a bump map attached to the shape. The output of the paint program
is a 3D model with associated texture maps. This information can
be used with any rendering program with texture mapping capabilities.
Almost all traditional techniques of 2D computer image painting have
analogues in 3D object painting, but there are also many new techniques
unique to 3D. One example is the use of solid textures to pattern
the surface.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hansen07,
author = {Hansen, P.C.},
title = {Regularization {T}ools version 4.0 for {M}atlab 7.3},
journal = {Numer. Algorithms},
year = {2007},
volume = {46},
pages = {189--194},
number = {2},
fjournal = {Numerical Algorithms},
issn = {1017-1398},
mrclass = {65F22},
mrnumber = {MR2358249 (2008i:65089)},
mrreviewer = {Rosemary A. Renaut},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Hansen98,
title = {Rank-deficient and discrete ill-posed problems},
publisher = {Society for Industrial and Applied Mathematics (SIAM)},
year = {1998},
author = {Hansen, P. C.},
pages = {xvi+247},
series = {SIAM Monographs on Mathematical Modeling and Computation},
address = {Philadelphia, PA},
note = {Numerical aspects of linear inversion},
mrclass = {65F05 (65F10 65F20)},
mrnumber = {MR1486577 (99a:65037)},
mrreviewer = {Jin Xi Zhao},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{PerChristianHansen,
title = {Rank-Deficient and Discrete Ill-Posed Problems: Numerical Aspects
of Linear Inversion},
publisher = {SIAM},
year = {1997},
author = {Per Christian Hansen},
address = {Philadelphia}
}
@ARTICLE{Hansen94,
author = {Hansen, P. C.},
title = {Regularization tools: a {M}atlab package for analysis and solution
of discrete ill-posed problems},
journal = {Numer. Algorithms},
year = {1994},
volume = {6},
pages = {1--35},
number = {1-2},
fjournal = {Numerical Algorithms},
issn = {1017-1398},
mrclass = {65F30 (65F20)},
mrnumber = {MR1260397 (94k:65062)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hansen92,
author = {Hansen, P. C.},
title = {Analysis of discrete ill-posed problems by means of the $L$-curve},
journal = {SIAM Rev.},
year = {1992},
volume = {34},
pages = {561--580},
number = {4},
fjournal = {SIAM Review. A Publication of the Society for Industrial and Applied
Mathematics},
issn = {0036-1445},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{crv,
title = {Computer and Robot Vision},
publisher = {Addison Wesley},
year = {1993},
author = {R. M. Haralick and L. Shapiro},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{hjod:93,
author = {D. R. G. Hare and C. R. Johnson and D. D. Olesky and P. V. D. Driessche},
title = {Sparsity Analysis of the {QR} Factorization},
journal = {SIAM J. Matrix. Anal. Appl.},
year = {1993},
volume = {14},
pages = {655--669},
kwds = {sparse}
}
@INPROCEEDINGS{hariharan-aluru-shanker-02,
author = {Bari Hariharan and Srinivas Aluru and Balasubramaniam Shanker},
title = {A Scalable Parallel Fast Multipole Method for Analysis of Scattering
from Perfect Electrically Conducting Surfaces},
booktitle = {Proceedings of Supercomputing},
year = {2002},
series = {The SCxy Conference series},
address = {Baltimore, Maryland},
month = {November},
organization = {ACM/IEEE},
abstract = {
FMM computation.
Solve electromagnetics using the combined field equation. This
results on a Navier-like vector problem for the vector current on
the surface. It is solved using Galerkin with edge based
functions. They use plane-wave expansions so it must be a LOW
FREQUENCY computation. CLAIM O(N \log(N)) computation. They use
TFQMR to solve. Leafs have 0.4 WAVELENGTHS size. PARTITION:
trivial intial partioning. Use compressed octrees for provably
optimal algorithms independent with the shape of the
scatterer. Morton ordering of BOXES (wich corresponds to preorder
traversal). Detailed discussion on tree construction, and on how
to determine ghost values. NO LOAD BALANCING Each PE constructs
tree independently and then there is some global communication to
get the correct LETs. OVERALL DIFFICULT TO FOLLOW. Not
mathematical or algorithmic statements just BLAH, BLAH.
C + Fortran + MPI, 32 Dual Noads 1.26GHz IBM xSeries (NO mention
of Processor type, but should be Pentium 4) + Myrinet.
Test cases : Sphere, 3D L-shpaed surface. (HE SITES UNKNOWNS, NOT
GRID POINTS).
Fixed size : 20K points, 1-64PEs speedup 37.5 (60\% efficiency) uniform
and nonuniform distributions
Isogranular: 4.2GHz frequency, 1000K points, 32, 64 processors, NO
Accuracy,, 32,64 PEs (60\%)
Reports both per iteration, and total solution time. (TFQMR) },
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Haumann:1987:MPB,
author = {R. Haumann},
title = {Modeling the Physical Behavior of Flexible Objects},
booktitle = {Topics in Physically-based Modeling, \emph{Eds. Barr, Barrel, Haumann,
Kass, Platt, Terzopoulos, and Witkin}, {SIGGRAPH} Course Notes},
year = {1987},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{Hauth:2004:VSD,
author = {Hauth, Michael},
title = {Visual Simulation of Deformable Models},
school = {University of T\"{u}bingen},
year = {2004},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hauth:2003:ANM,
author = {Hauth, M. and Etzmuss, O. and Strasser, W.},
title = {Analysis of numerical methods for the simulation of deformable models},
journal = {Visual Computer},
year = {2003},
volume = {19},
pages = {581-600},
number = {7-8},
annotation = {Simulating deformable objects based on physical laws has become the
most popular technique for modeling textiles, skin, or volumetric
soft objects like human tissue. The physical model leads to an ordinary
differential equation. Recently, several approaches to fast algorithms
have been proposed. In this work, more profound numerical background
about numerical stiffness is provided. Stiff equations impose stability
restrictions on a numerical integrator. Some one-step and multistep
methods with adequate stability properties are presented. For an
efficient implementation, the inexact Newton method is discussed.
Applications to 2D and 3D elasticity problems show that the discussed
methods are faster and give higher-quality solutions than the commonly
used linearized Euler method.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{heat:84,
author = {M. T. Heath},
title = {Numerical Methods for Large Sparse Linear Least Squares Problems},
journal = {SIAM J. Sci. Statist. Comput.},
year = {1984},
volume = {5},
pages = {497--513},
kwds = {sparse, survey}
}
@TECHREPORT{hema:96,
author = {P. Heggernes and P. Matstoms},
title = {Finding Good Column Orderings for Sparse {QR} Factorizations},
institution = {Department of Mathematics, Link{\"o}ping University},
year = {1996},
type = {{Tech. Report}},
number = {LiTH-MAT-1996-20},
address = {Sweden},
kwds = {sparse, qrd}
}
@ARTICLE{Helfrich:1972:EPB,
author = {W. Helfrich},
title = {Elastic Properties of Bilayers: Theory and Possible Experiments},
journal = {Z. Naturforsch.},
year = {1973},
volume = {28c},
pages = {693-703},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{henshaw-94,
author = {William~D. Henshaw},
title = {A Fourth-Order Accurate Method for the Incompressible {N}avier-{S}tokes
Equations on Overlapping Grids},
journal = {Journal of Computational Physicsp},
year = {1994},
volume = {113},
pages = {13--25},
number = {1},
month = {July},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hermann:1967:FEB,
author = {L. R. Hermann},
title = {Finite element bending analysis of plates},
journal = {J. Eng. Mech. Div.},
year = {1967},
volume = {93},
pages = {13--25},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hermann:1996:GIO,
author = {Hermann, T.},
title = {{$G^2$} interpolation of free form curve networks by biquintic {G}regory
patches},
journal = {Comput. Aided Geom. Design},
year = {1996},
volume = {13},
pages = {873--893},
number = {9},
note = {In memory of John Gregory},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Heron,
title = {Metrica},
year = {60},
author = {{Heron}},
address = {Alexandria, Roman Egypt},
location = {Alexandria, Roman Egypt}
}
@INPROCEEDINGS{hertzmann99nprcourse,
author = {Aaron Hertzmann},
title = {Introduction to 3{D} Non-Photorealistic Rendering: Silhouettes and
Outlines},
booktitle = {Non-Photorealistic Rendering. SIGGRAPH 99 Course Notes.},
year = {1999},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{hertzmann00illustrating,
author = {Aaron Hertzmann and Denis Zorin},
title = {Illustrating Smooth Surfaces},
booktitle = {Proceedings of SIGGRAPH 2000},
year = {2000},
pages = {517--526},
owner = {sorkine},
timestamp = {2008.10.28}
}
@BOOK{Higham2,
title = {Accuracy and Stability of Numerical Algorithms},
publisher = {SIAM},
year = {2002},
author = {Nicholas~J. Higham},
address = {Philadelphia},
edition = {2}
}
@TECHREPORT{Hildebrandt:2005:CMG,
author = {Klaus Hildebrand and Konrad Polthier and Max Wardetzky},
title = {On the Convergence of Metric and Geometric Properties of Polyhedral
Surfaces},
institution = {ZIB},
year = {2005},
number = {Preprint 05-24},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Polthier:2003:AFN,
author = {Klaus Hildebrandt and Konrad Polthier},
title = {Anisotropic Filtering of Non-Linear Surface Features},
journal = j-CGF,
year = {2004},
volume = {23},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{HildebrandtSmoothFeatures,
author = {Klaus Hildebrandt and Konrad Polthier and Max Wardetzky},
title = {Smooth feature lines on surface meshes},
booktitle = {SGP '05: Proceedings of the third Eurographics symposium on Geometry
processing},
year = {2005},
pages = {85},
address = {Aire-la-Ville, Switzerland, Switzerland},
publisher = {Eurographics Association},
location = {Vienna, Austria}
}
@ARTICLE{Hildebrandt:2011:ISM,
author = {Hildebrandt, Klaus and Schulz, Christian and Tycowicz, Christoph
Von and Polthier, Konrad},
title = {Interactive surface modeling using modal analysis},
journal = {ACM Trans.\ Graph.},
year = {2011},
volume = {30},
pages = {119:1--119:11},
number = {5},
keywords = {Geometric modeling, deformation-based modeling, geometric optimization,
interactive modeling, modal derivatives, model reduction, surface
editing}
}
@INPROCEEDINGS{Hinckley:1994:PRW,
author = {Hinckley, K. and Pausch, R. and Goble, J. C. and Kassell, N. F.},
title = {Passive real-world interface props for neurosurgical visualization},
booktitle = {CHI '94: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1994},
pages = {452--458},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {Boston, Massachusetts, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hirota:2000:SOT,
author = {Koichi Hirota and Yasuyuki Tanoue and Toyohisa Kaneko},
title = {Simulation of three-dimensional cracks},
journal = {The Visual Computer},
year = {2000},
volume = {16},
pages = {371--378},
number = {7},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Salient97,
author = {Donald D. Hoffman and Manish Singh},
title = {Salience of visual parts},
booktitle = {Cognition},
year = {1997},
volume = {63(1)},
pages = {29--78},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Hong:1997:TNT,
author = {Hong, Qin and Terzopoulos, D.},
title = {Triangular NURBS and their dynamic generalizations},
journal = {Computer-Aided Geometric Design},
year = {1997},
volume = {14},
pages = {325-347},
number = {4},
abstract = {Triangular B-splines are a new tool for modeling a broad class of
objects defined over arbitrary, nonrectangular domains. They provide
an elegant and unified representation scheme for all piecewise continuous
polynomial surfaces over planar triangulations. To enhance the power
of this model, we propose triangular NURBS, the rational generalization
of triangular B-splines, with weights as additional degrees of freedom.
Fixing the weights to unity reduces triangular NURBS to triangular
B-splines. Conventional geometric design with triangular NURBS can
be laborious, since the user must manually adjust the many control
points and weights. To ameliorate the design process, we develop
a new model based on the elegant triangular NURBS geometry and principles
of physical dynamics. Our model combines the geometric features of
triangular NURBS with the demonstrated conveniences of interaction
within a physics-based framework. The dynamic behavior of the model
results from the numerical integration of differential equations
of motion that govern the temporal evolution of control points and
weights in response to applied forces and constraints. This results
in physically meaningful hence highly intuitive shape variation.
We apply Lagrangian mechanics to formulate the equations of motion
of dynamic triangular NURBS and finite element analysis to reduce
these equations to efficient numerical algorithms. We demonstrate
several applications, including direct manipulation and interactive
sculpting through force-based tools, the fitting of unorganized data,
and solid rounding with geometric and physical constraints.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hong:1996:DNP,
author = {Hong, Qin and Terzopoulos, D.},
title = {D-NURBS: a physics-based framework for geometric design},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {1996},
volume = {2},
pages = {85-96},
number = {1},
abstract = {Presents dynamic non-uniform rational B-splines (D-NURBS), a physics-based
generalization of NURBS. NURBS have become a de facto standard in
commercial modeling systems. Traditionally, however, NURBS have been
viewed as purely geometric primitives, which require the designer
to interactively adjust many degrees of freedom-control points and
associated weights-to achieve the desired shapes. The conventional
shape modification process can often be clumsy and laborious. D-NURBS
are physics-based models that incorporate physical quantities into
the NURBS geometric substrate. Their dynamic behavior, resulting
from the numerical integration of a set of nonlinear differential
equations, produces physically meaningful, and hence intuitive shape
variation. Consequently, a modeler can interactively sculpt complex
shapes to required specifications not only in the traditional indirect
fashion, by adjusting control points and setting weights, but also
through direct physical manipulation, by applying simulated forces
and local and global shape constraints. We use Lagrangian mechanics
to formulate the equations of motion for D-NURBS curves, tensor-product
D-NURBS surfaces, swung D-NURBS surfaces and triangular D-NURBS surfaces.
We apply finite element analysis to reduce these equations to efficient
numerical algorithms computable at interactive rates on common graphics
workstations. We implement a prototype modeling environment based
on D-NURBS and demonstrate that D-NURBS can be effective tools in
a wide range of computer-aided geometric design (CAGD) applications.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hong:1995:DMT,
author = {Hong, Qin and Terzopoulos, D.},
title = {Dynamic manipulation of triangular B-splines},
journal = {Proceedings. Third Symposium on Solid Modeling and Applications},
year = {1995},
pages = {351-360},
abstract = {Triangular B-splines provide a unified representation scheme for all
piecewise polynomials. They are useful for modeling a broad class
of complex objects defined over arbitrary, non-rectangular domains.
To date, however they have been viewed as purely geometric primitives
requiring the manual adjustment of multiple multiple control points
to design shapes. This indirect design process can be laborious and
often clumsy. As an alternative, we develop a new model based on
the elegant triangular B-spline geometry and principles of physical
dynamics. The dynamic behavior of our model, resulting from the numerical
integration of differential equations of motion, produces physically
meaningful and highly intuitive shape variation. The equations govern
the evolution of control points in response to applied forces and
constraints. We use Lagrangian mechanics to formulate the equations
of motion and finite element analysis to reduce these equations to
efficient numerical algorithms. Dynamic triangular B-splines provide
a systematic and unified approach for a variety of solid modeling
problems including shape blending, constraint-based design, and parametric
design. They also support direct manipulation and interactive sculpting
of shapes using force-based roofs. We demonstrate several applications
of dynamic triangular B-splines, including interactive sculpting
using forces and physical parameters, the fitting of unstructured
data, and solid rounding with geometric and physical constraints.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hong:1995:DN,
author = {Hong, Qin and Terzopoulos, D.},
title = {D-Nurbs},
journal = {Proceedings of the Third Pacific Conference on Computer Graphics
and Applications Pacific Graphics '95. Computer Graphics and Applications},
year = {1995},
pages = {455-474},
abstract = {This paper presents dynamic NURBS, or D-NURBS, a physics-based generalization
of non-uniform rational B-splines. NURBS have become a de facto standard
in commercial modeling systems because of their power to represent
both free-form and common analytic shapes. Traditionally, however,
NURBS have been viewed as purely geometric primitives, which require
the design to interactively adjust many degrees of freedom (DOFs)-control
points and associated weights-to achieve desired shapes. The conventional
shape modification process can often be clumsy and laborious. D-NURBS
are physics-based models that incorporate mass distribution, internal
deformation energies, forces, and other physical quantities into
the NURBS geometric substrate. Their dynamic behavior, resulting
from the numerical integration of a set of nonlinear differential
equations, produces physically meaningful, hence intuitive shape
variation. Consequently, a modeler can interactively sculpt complex
shapes to required specifications not only in the traditional indirect
fashion, by adjusting control points, but also through direct physical
manipulation, by applying simulated forces and local and global shape
constraints. We use Lagrangian mechanics to formulate the equations
of motion for D-NURBS curves, tensor-product surfaces, swung surfaces,
and triangulated surfaces. We apply finite element analysis to reduce
these equations to efficient algorithms that can be simulated at
interactive rates using standard numerical techniques. We describe
a prototype modeling environment based on D-NURBS, and demonstrate
that D-NURBS can be effective tools in a wide range of CAGD applications
such as shape blending, scattered data fitting and interactive sculpting.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hong:1995:DNS,
author = {Hong, Qin and Terzopoulos, D.},
title = {Dynamic NURBS swung surfaces for physics-based shape design},
journal = {Computer Aided Design},
year = {1995},
volume = {27},
pages = {111-127},
number = {2},
abstract = {A dynamic, freeform surface model which is useful for representing
a broad class of objects with symmetries and topological variability
is developed. The new model is based upon swung NURBS surfaces, and
it inherits their desirable cross-sectional design properties. It
melds these geometric features with the demonstrated convenience
of surface design within a physics-based framework. Several applications
of dynamic NURBS swung surfaces are demonstrated, including interactive
sculpting through the imposition of forces, and the adjustment of
physical parameters such as mass, damping, and elasticity. Additional
applications include surface design with geometric and physical constraints,
by rounding solids, and through the fitting of unstructured data.
The equations of motion for the dynamic NURBS swung surface model
are derived using the Lagrangian mechanics of an elastic surface
and the finite element method. It is also shown that these surfaces
are a special case of D-NURBS surfaces, a recently proposed physics-based
generalization of standard geometric NURBS. The freeform, rational
model not only provides a systematic and unified approach for a variety
of CAGD problems such as constraint-based optimization, variational
design, automatic weight selection, and shape approximation, but
it also supports interactive sculpting using physics-based manipulation
tools.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Hoppe:1996:PM,
author = {H. Hoppe},
title = {Progressive Meshes},
booktitle = {SIGGRAPH 96 Conference Proceedings},
year = {1996},
editor = {Holly Rushmeier},
series = {Annual Conference Series},
pages = {99--108},
month = {August},
organization = {ACM SIGGRAPH},
publisher = {Addison Wesley},
note = {held in New Orleans, Louisiana, 04-09 August 1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Hoppe96,
author = {Hugues Hoppe},
title = {Progressive Meshes},
booktitle = {Proceedings of ACM SIGGRAPH 96},
year = {1996},
pages = {99--108},
month = {August},
organization = {ACM SIGGRAPH},
publisher = {Addison Wesley}
}
@INPROCEEDINGS{hoppe94a,
author = {Hugues Hoppe and Tony DeRose and Tom Duchamp and Mark Halstead and
Huber Jin and John McDonald and Jean Schweitzer and Werner Stuetzle},
title = {Piecewise Smooth Surface Reconsruction},
booktitle = {Computer Graphics Proceedings},
year = {1994},
series = {Annual Conference Series},
pages = {295--302},
organization = {ACM Siggraph},
annote = {Modified Loop scheme with creases and cusps but little in terms of
proofs.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Hoppe:1993:MO,
author = {H. Hoppe and T.{DeRose} and T. Duchamp and J. McDonald and W. Stuetzle},
title = {Mesh Optimization},
booktitle = {Computer Graphics (SIGGRAPH '93 Proceedings)},
year = {1993},
editor = {James T. Kajiya},
volume = {27},
pages = {19--26},
month = {August},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hormann:2008:MEC,
author = {K. Hormann and N. Sukumar},
title = {Maximum Entropy Coordinates for Arbitrary Polytopes},
journal = j-CGF,
year = {2008},
volume = {27},
pages = {1513--1520},
number = {5}
}
@ARTICLE{Horn:87,
author = {Horn, B. K. P.},
title = {Closed-form solution of absolute orientation using unit quaternions},
journal = {Journal of the Optical Society of America},
year = {1987},
volume = {4},
number = {4},
owner = {sorkine},
timestamp = {2007.04.23}
}
@ARTICLE{Hornung:2005:SCO,
author = {Hornung, A. and Sar-Dessai, S. and Kobbelt, L.},
title = {Self-calibrating optical motion tracking for articulated bodies},
journal = {IEEE Virtual Reality 2005 (IEEE Cat. No.05CH37649)},
year = {2005},
pages = {75-82},
abstract = {Building intuitive user-interfaces for virtual reality applications
is a difficult task, as one of the main purposes is to provide a
natural, yet efficient input device to interact with the virtual
environment. One particularly interesting approach is to track and
retarget the complete motion of a subject. Established techniques
for full body motion capture like optical motion tracking exist.
However, due to their computational complexity and their reliance
on pre-specified models, they fail to meet the demanding requirements
of virtual reality environments such as real-time response, immersion,
and ad hoc configurability. Our goal is to support the use of motion
capture as a general input device for virtual reality applications.
In this paper we present a self-calibrating framework for optical
motion capture, enabling the reconstruction and tracking of arbitrary
articulated objects in real-time. Our method automatically estimates
all relevant model parameters on-the-fly without any information
on the initial tracking setup or the marker distribution, and computes
the geometry and topology of multiple tracked skeletons. Moreover,
we show how the model can make the motion capture phase robust against
marker occlusions by exploiting the redundancy in the skeleton model
and by reconstructing missing inner limbs and joints of the subject
from partial information. Meeting the above requirements our system
is well applicable to a wide range of virtual reality based applications,
where unconstrained tracking and flexible retargeting of motion data
is desirable.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{hosch:1993:FCAGD,
title = {{Fundamentals of Computer Aided Geometric Design}},
publisher = {A.K. Peters},
year = {1993},
author = {J. Hoschek and D. Lasser}
}
@ARTICLE{Howlett:1998:MSU,
author = {P. Howlett and W. T. Hewitt},
title = {Mass-Spring Simulation using Adaptive Non-Active Points},
journal = j-CGF,
year = {1998},
volume = {17},
pages = {345--354},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Hsu:1992:MSM,
author = {Hsu, Lucas and Kusner, Rob and Sullivan, John},
title = {Minimizing the squared mean curvature integral for surfaces in space
forms},
journal = {Experiment. Math.},
year = {1992},
volume = {1},
pages = {191--207},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{hu-johnsson-96,
author = {Yu Hu and S. Lennart Johnsson},
title = {A Data-Parallel Implementation of $O(N)$ Hierarchical {N}-body Methods},
booktitle = {Proceedings of Supercomputing},
year = {1996},
series = {The SCxy Conference series},
address = {Pittsburgh, Pennsylvania},
month = {November},
organization = {ACM/IEEE},
abstact = {
Constant in FMM is in the range 1000-10000;
Nice comparison of past methods., maximum was 100 Million particels
Reports efficiency, Cycles/particle and processor number.
They have implemented Aderson methods.
- Use level-3 BLAS for translation (so no acceleration
- Efficient memory
BUT they use special features on CM5, NON-ADAPTIVE },
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{huang06subspacemesh,
author = {Jin Huang and Xiaohan Shi and Xinguo Liu and Kun Zhou and Li-Yi Wei
and Shang-Hua Teng and Hujun Bao and Baining Guo and Heung-Yeung
Shum},
title = {Subspace gradient domain mesh deformation},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {1126--1134},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Huang:2008:NRU,
author = {Huang, Qi-Xing and Adams, Bart and Wicke, Martin and Guibas, Leonidas
J.},
title = {Non-rigid registration under isometric deformations},
booktitle = p-SGP,
year = {2008},
pages = {1449--1457}
}
@INPROCEEDINGS{Huang07,
author = {Xiaohuang Huang and Hongbo Fu and Oscar Kin-Chung Au and Chiew-Lan
Tai},
title = {Optimal boundaries for {P}oisson mesh merging},
booktitle = {Proc.\ SPM},
year = {2007},
pages = {35--40}
}
@BOOK{Hughes1987,
title = {The Finite Element Method: Linear Static and Dynamic Finite Element
Analysis},
publisher = {Prentice-Hall, Englewood Cliffs},
year = {1987},
author = {Thomas J. R. Hughes},
owner = {mbotsch},
timestamp = {2007.03.22}
}
@ARTICLE{Idelsohn:1994:FVF,
author = {Idelsohn, S. and O\~{n}ate, E.},
title = {Finite volumes and finite elements: two good friends},
journal = {International Journal for Numerical Methods in Engineering},
year = {1994},
volume = {37},
pages = {3323},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Idelsohn:1998:PII,
title = {Proceedings of IACM IV World Congress on Computational Mechanics},
publisher = {CIMNE},
year = {1998},
author = {Idelsohn, S. and O\~{n}ate, E. and Dvorkin, E. N.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Igarashi:2001:AUI,
author = {Igarashi, T. and Cosgrove, D.},
title = {Adaptive unwrapping for interactive texture painting},
booktitle = {SI3D '01: Proceedings of the 2001 symposium on Interactive 3D graphics},
year = {2001},
pages = {209--216},
address = {New York, NY, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Igarashi:2003:SMF,
author = {Takeo Igarashi and John F. Hughes},
title = {Smooth meshes for sketch-based freeform modeling},
booktitle = {ACM Symposium on Interactive 3{D} Graphics},
year = {2003},
pages = {139--142},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Igarashi:1999:TAS,
author = {Takeo Igarashi and Satoshi Matsuoka and Hidehiko Tanaka},
title = {Teddy: A Sketching Interface for 3{D} Freeform Design},
booktitle = {ACM SIGGRAPH},
year = {1999},
pages = {409--416},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{igarashi05arapshape,
author = {Takeo Igarashi and Tomer Moscovich and John F. Hughes},
title = {As-rigid-as-possible shape manipulation},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {1134--1141},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Irons:1983:EDP,
author = {Irons, Bruce and Loikkanen, Matti},
title = {An engineers' defence of the patch test},
journal = {Internat. J. Numer. Methods Engrg.},
year = {1983},
volume = {19},
pages = {1391--1401},
number = {9},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Irons:1972:EPT,
author = {Irons, Bruce M. and Razzaque, Abdur},
title = {Experience with the patch test for convergence of finite elements},
journal = {The mathematical foundations of the finite element method with applications
to partial differential equations (Proc. Sympos., Univ. Maryland,
Baltimore, Md., 1972)},
year = {1972},
pages = {557--587},
note = {Academic Press New York},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{IronyShToFGCS,
author = {Dror Irony and Gil Shklarski and Sivan Toledo},
title = {Parallel and Fully Recursive Multifrontal Supernodal Sparse {C}holesky},
journal = {Future Generation Computer Systems},
year = {2004},
volume = {20},
pages = {425--440},
number = {3}
}
@INPROCEEDINGS{Irving:2004:IFE,
author = {Irving, G. and Teran, J. and Fedkiw, R.},
title = {Invertible finite elements for robust simulation of large deformation},
booktitle = {Proceedings of the 2004 ACM SIGGRAPH/Eurographics symposium on Computer
animation},
year = {2004},
pages = {131-140},
address = {Grenoble, France},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Isenburg01,
author = {Martin Isenburg and Stefan Gumhold and Craig Gotsman},
title = {Connectivity shapes},
booktitle = {Proceedings of {IEEE} Visualization},
year = {2001},
pages = {135--142},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Isenburg:2000,
author = {Martin Isenburg and Jack Snoeylink},
title = {Face Fixer: Compressing Polygon Meshes With Properties},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {263--270},
keywords = {Mesh compression, connectivity encoding},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Ishii:1992:CSM,
author = {Ishii, H. and Kobayashi, M.},
title = {ClearBoard: a seamless medium for shared drawing and conversation
with eye contact},
booktitle = {CHI '92: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1992},
pages = {525--532},
address = {New York, NY, USA},
location = {Monterey, California, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{peters96b,
author = {Peters J.},
title = {Biquartic C1-surface splines over irregular meshes},
journal = {Computer-Aided Design},
year = {December 1995},
volume = {27},
pages = {895-903(9)},
abstract = {<P>C<SUP>1</SUP>-surface splines define tangent continuous surfaces
from control points in the manner of tensor-product (B-)splines,
but allow a wider class of control meshes capable of outlining arbitrary
free-form surfaces with or without boundary. In particular, irregular
meshes with non-quadrilateral cells and more or fewer than four cells
meeting at a point can be input and are treated in the same conceptual
frame work as tensor-product B-splines; that is, the mesh points
serve as control points of a smooth piecewise polynomial surface
representation that is local and evaluates by averaging. Biquartic
surface splines extend and complement the definition of C<SUP>1</SUP>-surface
splines in a previous paper (Peters, J SIAM J. Numer. Anal. Vol 32
No 2 (1993) 645-666) improving continuity and shape properties in
the case where the user chooses to model entirely with four-sided
patches. While tangent continuity is guaranteed, it is shown that
no polynomial, symmetry-preserving construction with adjustable blends
can guarantee its surfaces to lie in the local convex hull of the
control mesh for very sharp blends where three patches join. Biquartic
C<SUP>1</SUP>-surface splines do as well as possible by guaranteeing
the property whenever more than three patches join and whenever the
blend exceeds a certain small threshold.</P>},
annote = {Bi-quartic, but entirely four sided. No mention of smooth interpolation},
owner = {sorkine},
timestamp = {2008.10.27},
}
@techreport{Jacobson:IS:2011,
author = {Jacobson, Alec and Sorkine, Olga},
title = {A Cotangent Laplacian for Images as Surfaces},
institution = {ETH Zurich},
month = April,
year = {2012},
number = 757,
}
@phdthesis{Jacobson:THESIS:2013,
author = {Jacobson, Alec},
title = {Algorithms and interfaces for real-time deformation of 2D and 3D
shapes},
school = {ETH Zurich},
month = May,
year = {2013},
}
@ARTICLE{Jacobson:BBW:2011,
author = {Alec Jacobson and Ilya Baran and Jovan Popovi{\'{c}} and Olga Sorkine},
title = {Bounded Biharmonic Weights for Real-Time Deformation},
journal = j-TOG,
year = {2011},
volume = {30},
pages = {78:1--78:8},
number = {4}
}
@ARTICLE{Jacobson:STBS:2011,
author = {Alec Jacobson and Olga Sorkine},
title = {Stretchable and Twistable Bones for Skeletal Shape Deformation},
journal = j-TOG,
year = {2011},
pages = {165:1--165:8},
volume = {30},
number = {6}
}
@inproceedings{Jacobson:MixedFEM:2010,
author = {Alec Jacobson and Elif Tosun and Olga Sorkine and Denis Zorin},
title = {Mixed Finite Elements for Variational Surface Modeling},
pages = {1565--1574},
booktitle = p-SGP,
year = {2010},
}
@INPROCEEDINGS{James:1999:AAR,
author = {James, D. L. and Pai, D. K.},
title = {Art{D}efo: accurate real time deformable objects},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {1999},
pages = {65--72},
address = {New York, NY, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{James:2005:SMA,
author = {Doug L. James and Christopher D. Twigg},
title = {Skinning mesh animations},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {399--407},
number = {3}
}
@INPROCEEDINGS{JiLiu05,
author = {Zhongping Ji and Ligang Liu and Guojin Wang},
title = {A global {L}aplacian smoothing approach with feature preservation},
booktitle = {Proceedings of the 9th International Conference on Computer Aided
Design and Computer Graphics},
year = {2005},
pages = {269--274},
publisher = {IEEE Computer Society},
location = {HongKong},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{GU:ConfParamRicci,
author = {M. Jin and J. Kim and F. Luo and S. Lee and X. Gu},
title = {Conformal Surface Parameterization Using Euclidean Ricci Flow},
note = {Manuscript},
year = {2006},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Jin:2004:OGC,
author = {Jin, M. and Wang, Y. and Yau, S.-T. and Gu, X.},
title = {Optimal Global Conformal Surface Parameterization},
booktitle = {15th IEEE Visualization 2004 (VIS'04)},
year = {2004},
pages = {267--274},
address = {Los Alamitos, CA, USA},
publisher = {IEEE Computer Society},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{HarmonicCoodinates07,
author = {Pushkar Joshi and Mark Meyer and Tony DeRose and Brian Green and
Tom Sanocki},
title = {Harmonic coordinates for character articulation},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {71},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Jovicevic:1999:ABS,
author = {Jovicevic, J. and O\~{n}ate, E.},
title = {Analysis of beams and shells using a rotation-free finite element-finite
volume formulation},
year = {1999},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ju:2005:MVC,
author = {Tao Ju and Scott Schaefer and Joe Warren},
title = {Mean value coordinates for closed triangular meshes},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {561--566},
number = {3}
}
@ARTICLE{Ju:2008:RST,
author = {Tao Ju and Qian-Yi Zhou and Michiel van de Panne and Daniel Cohen-Or
and Ulrich Neumann},
title = {Reusable Skinning Templates Using Cage-Based Deformations},
journal = j-TOG,
year = {2008},
volume = {27},
pages = {122:1--122:10},
number = {5},
month = dec
}
@ARTICLE{Junho:2005:VDM,
author = {Junho, Kim and Seungyong, Lee and Kobbelt, L.},
title = {View-dependent mesh streaming with minimal latency},
journal = {International Journal of Shape Modeling},
year = {2005},
volume = {11},
pages = {63-89},
number = {1},
abstract = {This paper presents a novel framework for view-dependent streaming
of multiresolution meshes. In contrast to conventional progressive
streaming in which the resolution of a model changes globally, our
server dynamically adjusts the transmission order of the detail data
with respect to the client's current viewpoint. By extending the
truly selective refinement scheme for progressive meshes to a client-server
architecture, we accomplish an efficient view-dependent streaming
framework that minimizes network communication overhead to facilitate
minimal latency of mesh updates for varying viewpoints. Furthermore,
we reduce the per-client session data on the server side by using
a special data structure for encoding which vertices have already
been transmitted to each client. We provide an analytic comparison
of several view-dependent streaming frameworks and show that our
framework outperforms others in terms of the network overhead. Experimental
results indicate that our framework is efficient enough for a broadcast
scenario where one server streams geometry data to multiple clients
with different view points.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Junho:2004:VDS,
author = {Junho, Kim and Seungyong, Lee and Kobbelt, L.},
title = {View-dependent streaming of progressive meshes},
journal = {Proceedings. Shape Modeling International 2004 (IEEE Cat. No.04PR2075)},
year = {2004},
pages = {209-220},
abstract = {Multiresolution geometry streaming has been well studied in recent
years. The client can progressively visualize a triangle mesh from
the coarsest resolution to the finest one while a server successively
transmits detail information. However, the streaming order of the
detail data usually depends only on the geometric importance, since
basically a mesh simplification process is performed backwards in
the streaming. Consequently, the resolution of the model changes
globally during streaming even if the client does not want to download
detail information for the invisible parts from a given view point.
In this paper, we introduce a novel framework for view-dependent
streaming of multiresolution meshes. The transmission order of the
detail data can be adjusted dynamically according to the visual importance
with respect to the client's current view point. By adapting the
truly selective refinement scheme for progressive meshes, our framework
provides efficient view-dependent streaming that minimizes memory
cost and network communication overhead. Furthermore, we reduce the
per-client session data on the server side by using a special data
structure for encoding which vertices have already been transmitted
to each client. Experimental results indicate that our framework
is efficient enough for a broadcast scenario where one server streams
geometry data to multiple clients with different view points.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Karman:1910:FM,
author = {Th.von K\'arm\'an},
title = {Festigkeistprobleme im {M}aschinenbau},
booktitle = {Encyklop\"adie der Mathematischen Wissenschaften},
year = {1910},
volume = {4},
pages = {311--385},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kalnins:2003:CSS,
author = {Robert D. Kalnins and Philip L. Davidson and Lee Markosian and Adam
Finkelstein},
title = {Coherent Stylized Silhouettes},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {856--861},
number = {3},
month = jul,
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Kalnins:2002:WND,
author = {Robert D. Kalnins and Lee Markosian and Barbara J. Meier and Michael
A. Kowalski and Joseph C. Lee and Philip L. Davidson and Matthew
Webb and John F. Hughes and Adam Finkelstein},
title = {{WYSIWYG} {NPR}: Drawing Strokes Directly on 3{D} Models},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {755--762},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Kami:2005:FBL,
author = {Kami, Z. and Gotsman, C. and Gortler, S. J.},
title = {Free-boundary linear parameterization of 3D meshes in the presence
of constraints},
journal = {Proceedings. International Conference on Shape Modeling and Applications},
year = {2005},
pages = {266--275},
abstract = {Linear parameterization of 3D meshes with disk topology is usually
performed using the method of barycentrie coordinates pioneered by
Tutte and Floater. This imposes a convex boundary on the parameterization,
which can significantly distort the result. Recently, several methods
showed how to relax the convex boundary requirement while still using
the barycentric coordinates formulation. However, this relaxation
can result in other artifacts in the parameterization. In this paper
we explore these methods and give a general recipe for "natural"
boundary conditions for the family of so-called "three point" barycentric
coordinates. We discuss the shortcomings of these methods and show
how they may be rectified using an iterative scheme or a carefully
crafted "virtual boundary". Finally, we show how these methods adapt
easily to solve the problem of constrained parameterization.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kamiyama:2005:VBS,
author = {Kamiyama, K. and Vlack, K. and Mizota, T. and Kajimoto, H. and Kawakami,
N. and Tachi, S.},
title = {Vision-Based Sensor for Real-Time Measuring of Surface Traction Fields},
journal = {IEEE Comput. Graph. Appl.},
year = {2005},
volume = {25},
pages = {68--75},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kanai99,
author = {Takashi Kanai and Hiromasa Suzuki and Jun Mitani and Fumihiko Kimura},
title = {Interactive mesh fusion based on local {3D} metamorphosis},
booktitle = {Proc.\ Graphics Interface},
year = {1999},
pages = {148--156}
}
@INPROCEEDINGS{Kanai:1999:IMF,
author = {Takashi Kanai and Hiromasa Suzuki and Jun Mitani and Fumihiko Kimura},
title = {Interactive Mesh Fusion Based on Local 3{D} Metamorphosis},
booktitle = {Proceedings of Graphics Interface},
year = {1999},
pages = {148--156},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kang:2001:AEA,
author = {Young-Min Kang and Jeong-Hyeon Choi and Hwan-Gue Cho and Do-Hoon
Lee},
title = {An efficient animation of wrinkled cloth with approximate implicit
integration},
journal = {The Visual Computer},
year = {2001},
volume = {17},
pages = {147--157},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kang:2000:FSA,
author = {Kang, Young-Min and Choi, Jeong-Hyeon and Cho, Hwan-Gue and Park,
Chan-Jong},
title = {Fast and stable animation of cloth with an approximated implicit
method},
journal = {Proceedings Computer Graphics International 2000},
year = {2000},
pages = {247-255},
annotation = {Realistic animation of soft objects such as cloth is essential for
plausible character animation. Many techniques have been proposed
for the simulation of soft objects, and most of them are based on
numerical integration. Among the techniques, the implicit integration
method is the most likely technique for real time environments, since
it allows large time steps for cloth simulation by ensuring the stability
of systems. However the most critical flaw of the implicit method
is that it involves a large linear system. The paper presents a fast
animation technique for animating soft objects based on a mass-spring
model with an approximated implicit method which does not involve
linear system solving. The proposed technique stably updates the
state of n mass-points in O(n) time when the number of total springs
are O(n). Because the mass-spring model shows a superelastic effect,
the excessively deformed springs (i.e., super-elongated springs)
should be adjusted for reality. The paper presents an efficient inverse
dynamics process to adjust the super-elongated springs.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{kara07sketchbasedshapes,
author = {Levent Burak Kara and Kenji Shimada},
title = {Sketch-based 3{D} shape creation for industrial styling design},
journal = {IEEE Computer Graphics and Applications},
year = {2007},
volume = {27},
pages = {60--71},
number = {1},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Karni:2009:EID,
author = {Karni, Z. and Freedman, D. and Gotsman, C.},
title = {Energy-based image deformation},
booktitle = p-SGP,
year = {2009},
pages = {1257--1268},
acmid = {1735605},
}
@INPROCEEDINGS{KarniGotsman2001,
author = {Z. Karni and C. Gotsman},
title = {3{D} Mesh Compression Using Fixed Spectral Bases},
booktitle = {Proceedings of Graphics Interface},
year = {2001},
pages = {1--8},
publisher = {Canadian Information Processing Society},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Karni:2000:SCO,
author = {Zachi Karni and Craig Gotsman},
title = {Spectral Compression of Mesh Geometry},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {279--286},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{karpenko06smoothsketch,
author = {Olga A. Karpenko and John F. Hughes},
title = {Smooth{S}ketch: 3{D} free-form shapes from complex sketches},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {589--598},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Karpenko:2002:FSW,
author = {O. Karpenko and J. F. Hughes and R. Raskar},
title = {Free-form sketching with variational implicit surfaces},
journal = j-CGF,
year = {2002},
volume = {21},
pages = {585--594},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{KarypisKu1998metis,
author = {George Karypis and Vipin Kumar},
title = {A Fast and High Quality Multilevel Scheme for partitioning irregular
graphs},
journal = {SIAM Journal on Scientific Computing},
year = {1998},
volume = {20},
pages = {359--392},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{KKK:2006:PJS,
author = {K. Kar{\v c}iauskas and A. Myles and J. Peters},
title = {A {$C^2$} Polar Jet Subdivision},
booktitle = p-SGP,
year = {2006},
editor = {A. Schaeffer and K. Polthier},
pages = {to appear},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Karciauskas:2005:PCS,
author = {Kar{\v{c}}iauskas, K. and Peters, J.},
title = {Polynomial {$C^2$} spline surfaces guided by rational multisided
patches},
booktitle = {Computational methods for algebraic spline surfaces},
publisher = {Springer},
year = {2005},
pages = {119--134},
address = {Berlin},
mrclass = {65D17},
mrnumber = {MR2127185 (2005k:65039)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Karciauskas:2003:SCS,
author = {Kar{\v{c}}iauskas, K. and Peters, J{\"o}rg and Reif, U.},
title = {Shape characterization of subdivision surfaces---case studies},
journal = {Comput. Aided Geom. Design},
year = {2004},
volume = {21},
pages = {601--614},
number = {6},
coden = {CAGDEX},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
mrclass = {65D17 (65D18)},
mrnumber = {MR2071825},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kass:1992:CBD,
author = {Michael Kass},
title = {{CONDOR:} Constraint-based Dataflow},
booktitle = {Proceedings of {{SIGGRAPH}}},
year = {1992},
pages = {321--330},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kass:1987:SACa,
author = {Kass, M. and Witkin, A. and Terzopoulos, D.},
title = {Snakes: active contour models},
journal = {International Journal of Computer Vision},
year = {1987},
volume = {1},
pages = {321-331},
number = {4},
abstract = {A snake is an energy-minimizing spline guided by external constraint
forces and influenced by image forces that pull it toward features
such as lines and edges. Snakes are active contour models: they lock
onto nearby edges, localizing them accurately. Scale-space continuation
can be used to enlarge the capture region surrounding a feature.
Snakes provide a unified account of a number of visual problems,
including detection of edges, lines, and subjective contours; motion
tracking; and stereo matching.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kass:1987:SACb,
author = {Kass, M. and Witkin, A. and Terzopoulos, D.},
title = {Snakes: active contour models},
journal = {Proceedings of the First International Conference on Computer Vision
(Cat. No.87CH2465-3)},
year = {1987},
pages = {259-268},
abstract = {A snake is an energy-minimizing spline guided by external constraint
forces and influenced by image forces that pull it toward features
such as lines and edges. Snakes are active contour models; they lock
into nearby edges, localizing them accurately. Scale-space continuation
can be used to enlarge the capture region surrounding a feature.
Snakes provide a unified account of a number of visual problems,
including detection of edges, lines, and subjective contours, motion
tracking, and stereo matching. The authors have used snakes successfully
for interactive interpretation, in which user-imposed constraint
forces guide the snake near features of interest.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Katili:1993:NDK,
author = {Katili, I.},
title = {A new discrete Kirchhoff-Mindlin element based on Mindlin-Reissner
plate theory and assumed shear fields. Part I: An extended DKT element
for thick plate bending analysis},
journal = {International Journal for Numerical Methods in Engineering},
year = {1993},
volume = {36},
pages = {1859},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{Tal:2002,
author = {S. Katz and S. Shlafman and A. Tal and E. Zuckerberger },
title = {Controlled polyhedral surface decomposition with applications},
institution = {The Technion, Israel},
year = {2002},
number = {Technical Report},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kaufmann:1988:SSU,
author = {Kaufmann, E. and Klass, R.},
title = {Smoothing surfaces using reflection lines for families of splines},
journal = {Computer Aided Design},
year = {1988},
volume = {20},
pages = {312-316},
number = {6},
abstract = {In car body design there exist various possibilities to design surfaces
with given boundaries. In many cases the resulting surfaces are not
automatically smooth enough. A method is presented to define reflection
lines on special splines as, for example, the intersection curves
of a surface and a family of planes. These reflection lines represent
surface irregularities in a very sensitive manner. If the reflection
lines have to be changed, a suitable new family of splines is calculated.
These smoothed splines can be used to create a smoothed surface.
The resulting algorithm has been implemented in a CADCAM system.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kavan-09-PB,
author = {Ladislav Kavan and Steven Collins and Carol O'Sullivan},
title = {Automatic Linearization of Nonlinear Skinning},
booktitle = {Proc.\ I3D},
year = {2009},
pages = {49--56},
month = {February/March}
}
@ARTICLE{Kavan:2008:GSW,
author = {Ladislav Kavan and Steven Collins and Jiri Zara and Carol O'Sullivan},
title = {Geometric Skinning with Approximate Dual Quaternion Blending},
journal = j-TOG,
year = {2008},
volume = {27},
pages = {105:1--105:23},
number = {4}
}
@ARTICLE{kavan2010fast,
author = {Kavan, L. and Sloan, P.P. and O'Sullivan, C.},
title = {Fast and Efficient Skinning of Animated Meshes},
journal = j-CGF,
year = {2010},
volume = {29},
pages = {327--336},
number = {2},
issn = {0167-7055}
}
@PHDTHESIS{Keckeisen:2005:PCS,
author = {Keckeisen, Michael},
title = {Physical Cloth Simulation and Applications for the Visualization,
Virtual Try-On, and Interactive Design of Garments},
school = {University of T\"{u}bingen},
year = {2005},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kergosien:1994:BCV,
author = {Y. L. Kergosien and H. Gotoda and T. L. Kunii},
title = {Bending and Creasing Virtual Paper},
journal = {IEEE Computer Graphics and Applications},
year = {1994},
pages = {40--48},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Khismatullin:2005:TNS,
author = {Damir B. Khismatullin and George A. Truskey},
title = {Three-dimensional numerical simulation of receptor-mediated leukocyte
adhesion to surfaces: Effects of cell deformability and viscoelasticity},
journal = {Physics of Fluids},
year = {2005},
volume = {17},
number = {3},
abstract = {Computational fluid dynamics is used to investigate the effects of
cell deformability and viscoelasticity on receptor-mediated leukocyte
adhesion to endothelium or a ligand coated surface in a parallel
plate flow chamber. In the three-dimensional numerical code, a leukocyte
is modeled as a compound viscoelastic drop (a nucleus covered by
a thick layer of cytoplasm). The nucleus, cytoplasm, and extracellular
fluid are considered as Newtonian or viscoelastic liquids of high
viscosity. The receptor-ligand interaction is incorporated into the
code by using the spring-peeling kinetic model under the assumption
that leukocyte receptors are located on the tips of cylindrical microvilli
distributed over the leukocyte membrane. The code is based on the
Volume-of-Fluid method and the Giesekus constitutive equation is
implemented in the code to capture viscoelasticity of the cytoplasm
and nucleus. Numerical simulations demonstrate the formation and
breakup of membrane tethers observed in vitro and suggest that the
elasticity of the cytoplasm is responsible for a tear-drop shape
of rolling leukocytes in vivo. When viewed from the top, as normally
occurs during shear flow experiments in vitro, little or no deformation
occurs, a side view shows significant deformation in the contact
region. We show that the leukocyte membrane can be extended and disrupted
under high shear if the receptor-ligand bonds live in a stressed
state for a sufficiently long time. If the shear rate is low, the
leukocyte rolls along the surface. The rolling velocity of the viscoelastic
cell is smaller than that of the Newtonian cell. This is due to the
increased deformability of the viscoelastic cell and, as a result,
the decreased torque acting on this cell. PACS numbers: 87.17.Aa,
87.17.Jj, 82.35.Gh, 83.85.},
keywords = {blood; haemodynamics; haemorheology; computational fluid dynamics;
cellular biophysics; flow simulation; numerical analysis; deformation;
viscoelasticity; shear flow; biomembranes; non-Newtonian fluids;
confined flow; adhesion},
numpages = {21},
owner = {sorkine},
publisher = {AIP},
timestamp = {2008.10.27},
}
@INPROCEEDINGS{Kho:2005:SMD,
author = {Y. Kho and M. Garland},
title = {Sketching mesh deformations},
booktitle = {Proceedings of Symposium on Interactive 3{D} Graphics and Games},
year = {2005},
pages = {147--154},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{KPMS:2002,
author = {Andrei Khodakovsky and Pierre Alliez and Mathieu Desbrun and Peter
Schr\"{o}der},
title = {Near-optimal connectivity encoding of 2-manifold polygon meshes},
journal = {Graph. Models},
year = {2002},
volume = {64},
pages = {147--168},
number = {3/4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Khodakovsky:2003:GSP,
author = {Khodakovsky, A. and Litke, N. and Schr{\"o}der, P.},
title = {Globally smooth parameterizations with low distortion},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {350--357},
number = {3},
abstract = {Good parameterizations are of central importance in many digital geometry
processing tasks. Typically the behavior of such processing algorithms
is related to the smoothness of the parameterization and how much
distortion it contains. Since a parameterization maps a bounded region
of the plane to the surface, a parameterization for a surface, which
is not homeomorphic to a disc, must be made up of multiple pieces.
We present a novel parameterization algorithm for arbitrary topology
surface meshes, which computes a globally smooth parameterization
with low distortion. We optimize the patch layout subject to criteria
such as shape quality and metric distortion, which are used to steer
a mesh simplification approach for base complex construction. Global
smoothness is achieved through simultaneous relaxation over all patches,
with suitable transition functions between patches incorporated into
the relaxation procedure. We demonstrate the quality of our parameterizations
through numerical evaluation of distortion measures and the excellent
rate distortion performance of semiregular remeshes produced with
these parameterizations. The numerical algorithms required to compute
the parameterizations are robust and run on the order of minutes
even for large meshes.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{khodakovsky:2000,
author = {Andrei Khodakovsky and Peter Schr{\"o}der and Wim Sweldens},
title = {Progressive Geometry Compression},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {271--278},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{kimmel:98:geodesic,
author = {R. Kimmel and J. Sethian},
title = {Computing geodesic paths on manifolds},
journal = {Proceedings of National Academy of Sciences, USA},
year = {1998},
volume = {95},
pages = {8431--8435},
number = {15},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{Kimmerle:2005:CDP,
author = {Kimmerle, Stefan},
title = {Collision Detection and Post-Processing for Physical Cloth Simulation},
school = {University of T\"{u}bingen},
year = {2005},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{king99optimal,
author = {Davis King and Jarek Rossignac},
title = {Optimal bit allocation in compressed 3{D} models},
journal = {Computational Geometry, Theory and Applications},
year = {1999},
volume = {14},
pages = {91-118},
number = {1-3},
address = {Amsterdam, The Netherlands},
owner = {sorkine},
publisher = {Elsevier Science Publishers B. V.},
timestamp = {2008.10.27},
}
@ARTICLE{Klass:1980:CLS,
author = {Klass, R.},
title = {Correction of local surface irregularities using reflection lines},
journal = {Computer Aided Design},
year = {1980},
volume = {12},
pages = {73-77},
number = {2},
abstract = {A family of straight lines can be reflected onto a surface as seen
from a fixed point of vision. Curves generated in this way on the
surface are called reflection lines. Deviations of the surface will
give irregularities in these reflection lines. To correct these deviations,
a procedure can be developed to find the necessary changes of the
surface for a given variation of the reflection lines, the point
of vision and the family of straight lines being kept constant. An
example is given of correcting the surface of a car body using reflection
lines.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Klein:1998:MRF,
author = {Reinhard Klein},
title = {Multiresolution representations for surfaces meshes based on the
vertex decimation method},
journal = {Computers \& Graphics},
year = {1998},
volume = {22},
pages = {13--26},
number = {1},
month = {February},
owner = {sorkine},
publisher = {Pergamon Press / Elsevier Science},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:2003:FSRa,
author = {Kobbelt, L.},
title = {Freeform shape representations for efficient geometry processing},
journal = {Proceedings 11th Pacific Conference on Computer Graphics and Applications},
year = {2003},
pages = {37-37},
abstract = {Summary form only given. The most important concepts for the handling
and storage of freeform shapes in geometry processing applications
are parametric representations and volumetric representations. Both
have their specific advantages and drawbacks. While the algebraic
complexity of volumetric representations is independent from the
shape complexity, the domain of a parametric representation usually
has to have the same structure as the surface itself (which sometimes
makes is necessary to update the domain when the surface is modified).
On the other hand, the topology of a parametrically defined surface
can be controlled explicitly while in a volumetric representation,
the surface topology can change accidentally during deformation.
A volumetric representation reduces distance queries or inside/outside
tests to mere function evaluations but the geodesic neighborhood
relation between surface points is difficult to resolve. As a consequence,
it seems promising to combine parametric and volumetric representations
to effectively exploit both advantages. In this talk, a number of
projects is presented and discussed where such a combination leads
to efficient and numerically stable algorithms for the solution of
various geometry processing tasks. Applications include global error
control for mesh decimation and smoothing, topology control for level-set
surfaces, mesh repair, and shape modeling with unstructured point
clouds.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{kobbelt00discrete,
author = {Leif Kobbelt},
title = {Discrete fairing and variational subdivision for freeform surface
design},
journal = {The Visual Computer},
year = {2000},
volume = {16},
pages = {142-158},
number = {3-4},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Kobbelt:2000:RS,
author = {Kobbelt, L.},
title = {radic 3-subdivision},
journal = {Computer Graphics Proceedings. Annual Conference Series 2000. SIGGRAPH
2000. Conference Proceedings},
year = {2000},
pages = {103-112},
abstract = {A new stationary subdivision scheme is presented which performs slower
topological refinement than the usual dyadic split operation. The
number of triangles increases in every step by a factor of 3 instead
of 4. Applying the subdivision operator twice causes a uniform refinement
with tri-section of every original edge (hence the name radic 3-subdivision)
while two dyadic splits would quad-sect every original edge. Besides
the finer gradation of the hierarchy levels, the new scheme has several
important properties. The stencils for the subdivision rules have
minimum size and maximum symmetry. The smoothness of the limit surface
is C/sup 2/ everywhere except for the extraordinary points where
it is C/sup 1/. The convergence analysis of the scheme is presented
based on a new general technique which also applies to the analysis
of other subdivision schemes. The new splitting operation enables
locally adaptive refinement under built in preservation of the mesh
consistency without temporary crack fixing between neighboring faces
from different refinement levels. The size of the surrounding mesh
area which is affected by selective refinement is smaller than for
the dyadic split operation. We further present a simple extension
of the new subdivision scheme which makes it applicable to meshes
with boundaries and allows us to generate sharp feature lines.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1998:TBV,
author = {Kobbelt, L.},
title = {Tight bounding volumes for subdivision surfaces},
journal = {Proceedings Pacific Graphics '98. Sixth Pacific Conference on Computer
Graphics and Applications (Cat. No.98EX208)},
year = {1998},
pages = {17-26},
abstract = {We first demonstrate how to compute exact limit points and tangents
for surfaces generated by an arbitrary, stationary subdivision scheme.
We then describe how to construct simple bounding volumes for the
patches of a subdivision surface and present a simple numerical technique
to compute guaranteed bounds for the ranges of the basis functions
being associated with the subdivision scheme. Merging the local bounding
volumes allows us to generate envelope meshes which tightly enclose
the limit surface and which have the same structure as the initial
control mesh. The prominent applications for these envelope meshes
are the efficient ray tracing of subdivision surfaces as well as
efficient collision detection.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1998:UDF,
author = {Kobbelt, L.},
title = {Using the discrete Fourier transform to analyze the convergence of
subdivision schemes},
journal = {Applied and Computational Harmonic Analysis},
year = {1998},
volume = {5},
pages = {68-91},
number = {1},
abstract = {While the continuous Fourier transform is a well-established standard
tool for the analysis of subdivision schemes, we present a new technique
based on the discrete Fourier transform instead. We first prove a
very general convergence criterion for arbitrary interpolatory schemes,
i.e., for nonstationary, globally supported, or even nonlinear schemes.
Then we use the discrete Fourier transform as an algebraic tool to
transform subdivision schemes into a form suitable for the analysis.
This allows us to formulate simple and numerically stable sufficient
criteria for the convergence of subdivision schemes of very general
type. We analyze some example schemes to illustrate the resulting
easy-to-apply criteria which merely require one to numerically estimate
the maximum of a smooth function on a compact interval.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{kobbelt97,
author = {L. Kobbelt},
title = {Discrete Fairing},
booktitle = {Proceedings of the 7th IMA Conference on the Mathematics of Surfaces},
year = {1997},
pages = {101--131},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1997:DF,
author = {Kobbelt, L.},
title = {Discrete fairing},
journal = {The mathematics of surfaces, VII (Dundee, 1996)},
year = {1997},
pages = {101--129},
note = {Info. Geom., Winchester},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1997:REE,
author = {Kobbelt, L.},
title = {Robust and efficient evaluation of functionals on parametric surfaces},
journal = {Proceedings of the Thirteenth Annual Symposium on Computational Geometry},
year = {1997},
pages = {376-378},
abstract = {Quality control is an important issue in computational geometry. Since
analytical properties like the differentiability of a boundary representation
are often not sufficient to fully judge the quality of an object,
additional criteria measured in terms of scalar valued functionals
have to be verified. Energy functionals in the context of firing
are just one example where the global smoothness of a surface is
rated by one single value, e.g., the total amount of (squared) curvature.
More industrial examples are the computation of physical properties
like the surface area or the volume of an object, its center of gravity,
or the moments of inertia. In this paper we suggest solutions for
the key steps of an algorithm which performs the task of approximately
evaluating a functionals equation on a parametric surface. The efficiency
of the algorithm results from the adaption of powerful quadrature
techniques to the particular geometric setting. The robustness of
the algorithm is due to exact arithmetic operations.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1997:SEB,
author = {Kobbelt, L.},
title = {Stable evaluation of box-splines},
journal = {Numerical Algorithms},
year = {1997},
volume = {14},
pages = {377-382},
number = {4},
abstract = {The most elegant way to evaluate box-splines is by using their recursive
definition. However, a straightforward implementation reveals numerical
difficulties. A careful analysis of the algorithm allows a reformulation
which overcomes these problems without losing efficiency. A concise
vectorized MATLAB-implementation is given.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1996:VAS,
author = {Kobbelt, L.},
title = {A variational approach to subdivision},
journal = {Computer-Aided Geometric Design},
year = {1996},
volume = {13},
pages = {743-761},
number = {8},
abstract = {In this paper a new class of interpolatory refinement schemes is presented
which in every refinement step determines the new points by solving
an optimization problem. In general, these schemes are global, i.e.,
every new point depends on all points of the polygon to be refined.
By choosing appropriate quadratic functionals to be minimized iteratively
during refinement, very efficient schemes producing limiting curves
of high smoothness can be defined. The well known class of stationary
interpolatory refinement schemes turns out to be a special case of
these variational schemes.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{kobquad,
author = {L. Kobbelt},
title = {Interpolatory Subdivision on Open Quadrilateral Nets with Arbitrary
Topology},
booktitle = {Proceedings of Eurographics 96},
year = {1996},
series = {Computer Graphics Forum},
pages = {409--420},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1994:FDP,
author = {Kobbelt, L.},
title = {A fast dot-product algorithm with minimal rounding errors},
journal = {Computing},
year = {1994},
volume = {52},
pages = {355-369},
number = {4},
abstract = {Presents a new algorithm which computes dot-products of arbitrary
length with minimal rounding errors, independent of the number of
addends. The algorithm has an O(n) time and O(1) memory complexity,
and does not need extensions of the arithmetic kernel, i.e. the usual
floating-point operations. A slight modification yields an algorithm
which computes the dot-product in machine precision. Due to its simplicity,
the algorithm can easily be implemented in hardware.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{kobbelt00multiresdefo,
author = {Leif Kobbelt and Thilo Bareuther and Hans-Peter Seidel},
title = {Multiresolution shape deformations for meshes with dynamic vertex
connectivity},
journal = {CGF},
year = {2000},
volume = {19},
pages = {249--260},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{kobbelt:2000:MRSD,
author = {L. Kobbelt and T. Bareuther and H.-P. Seidel},
title = {Multiresolution Shape Deformations for Meshes with Dynamic Vertex
Connectivity},
booktitle = {Computer Graphics Forum (Eurographics 2000)},
year = {2000},
volume = {19},
number = {3},
pages = {249--260},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:2003:FSRb,
author = {Kobbelt, L. and Botsch, M.},
title = {Freeform shape representations for efficient geometry processing},
journal = {Proceedings. Shape Modeling International 2003},
year = {2003},
pages = {111-115},
abstract = {The most important concepts for the handling and storage of freeform
shapes in geometry processing applications are parametric representation
and volumetric representations. Both have their specific advantages
and drawbacks. While the algebraic complexity of volumetric representations
S = {(x,y,z) | f(x,y,z) = 0} is independent from the shape complexity,
the domain Omega of a parametric representation f: Omega rarr S usually
has to have the same structure as the surface S itself (which sometimes
makes it necessary to update the domain when the surface is modified.
On the other hand, the topology of a parametrically defined surface
can be controlled explicitly while in a volumetric representation,
the surface topology can change accidentally during deformation.
A volumetric representation reduces distance queries or inside/outside
tests to mere function evaluations but the geodesic neighborhood
relation between surface points is difficult to resolve. As a consequence,
it seems promising to combine parametric and volumetric representations
to effectively exploit both advantages. A number of applications
are presented and discussed where such a combination leads to efficient
and numerically stable algorithms for the solution of various geometry
processing tasks. These applications include: surface remeshing,
mesh fairing, global error control for mesh decimation and smoothing,
and topology control for level-set surfaces.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kobbelt1998,
author = {Leif Kobbelt and Sven Campagna and Hans-Peter Seidel},
title = {A general framework for mesh decimation},
booktitle = {Proceedings of Graphics Interface},
year = {1998},
pages = {43--50},
owner = {mario},
timestamp = {2006.10.27}
}
@INPROCEEDINGS{KobbeltSIG98,
author = {Leif Kobbelt and Swen Campagna and Jens Vorsatz and Hans-Peter Seidel},
title = {Interactive multi-resolution modeling on arbitrary meshes},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1998},
pages = {105--114},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1997:IMG,
author = {Kobbelt, L. and Hesse, T. and Prautzsch, H. and Schweizerhof, K.},
title = {Iterative mesh generation for FE-computations on free form surfaces},
journal = {Engineering Computations},
year = {1997},
volume = {14},
pages = {806-820},
number = {7},
abstract = {Presents an interpolatory subdivision scheme to generate adaptively
refined quadrilateral meshes which approximate a smooth surface of
arbitrary topology. The described method differs significantly from
classical mesh generation techniques based on spline surfaces or
implicit representations since no explicit description of the limit
surface is used. Instead, simple affine combinations are applied
to compute new vertices if a face of the net is split. These rules
are designed to guarantee asymptotic smoothness, i.e. the sequence
of refined nets converges to a smooth limit surface. Subdivision
techniques are useful mainly in applications where a given quadrilateral
net is a coarse approximation of a surface and points on a refined
grid have to be estimated. To evaluate the proposed approach, shows
examples for FE-computations on surfaces generated by this algorithm.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1998:MFV,
author = {Kobbelt, L. and Schr\"{o}der, P.},
title = {A multiresolution framework for variational subdivision},
journal = j-TOG,
year = {1998},
volume = {17},
pages = {209-237},
number = {4},
abstract = {Subdivision is a powerful paradigm for the generation of curves and
surfaces. It is easy to implement, computationally efficient and
useful in a variety of applications because of its intimate connection
with multiresolution analysis. An important task in computer graphics
and geometric modeling is the construction of curves that interpolate
a given set of points and minimize a fairness functional (variational
design). In the context of subdivision, fairing leads to special
schemes requiring the solution of a banded linear system at every
subdivision step. We present several examples of such schemes, including
one that reproduces nonuniform interpolating cubic splines. Expressing
the construction in terms of certain elementary operations, we are
able to embed variational subdivision in the lifting framework, a
powerful technique to construct wavelet filter banks given a subdivision
scheme. This allows us to extend the traditional lifting scheme for
FIR filters to a certain class of IIR filters. Consequently, we show
how to build variationally optimal curves and associated stable wavelets
in a straightforward fashion. The algorithms to perform the corresponding
decomposition and reconstruction transformations are easy to implement
and efficient enough for interactive applications.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1997:USH,
author = {Kobbelt, L. and Stamminger, M. and Seidel, H. P.},
title = {Using subdivision on hierarchical data to reconstruct radiosity distribution},
journal = j-CGF,
year = {1997},
volume = {16},
pages = {C347-55, C396},
number = {3},
abstract = {Computing global illumination by finite element techniques usually
generates a piecewise constant approximation of the radiosity distribution
on surfaces. Directly displaying such scenes generates artefacts
due to discretization errors. The authors propose to remedy this
drawback by considering the piecewise constant output to be samples
of a (piecewise) smooth function in object space and reconstruct
this function by applying a binary subdivision scheme. They design
custom taylored subdivision schemes with quadratic precision for
the efficient refinement of cell- or pixel-type data. The technique
naturally allows to reconstruct functions from non-uniform samples
which result from adaptive binary splitting of the original domain
(quadtree). This type of output is produced, e.g. by hierarchical
radiosity algorithms. The result of the subdivision process can be
mapped as a texture on the respective surface patch which allows
to exploit graphics hardware for considerably accelerating the display.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1999:MHU,
author = {Kobbelt, L. and Vorsatz, J. and Seidel, H. P.},
title = {Multiresolution hierarchies on unstructured triangle meshes},
journal = {Computational Geometry: Theory and Applications},
year = {1999},
volume = {14},
pages = {5-24},
number = {1-3},
abstract = {The use of polygonal meshes for the representation of highly complex
geometric objects has become the de facto standard in most computer
graphics applications. Especially triangle meshes are preferred due
to their algorithmic simplicity, numerical robustness, and efficient
display. The possibility to decompose a given triangle mesh into
a hierarchy of differently detailed approximations enables sophisticated
modeling operations like the modification of the global shape under
preservation of the detail features. So far, multiresolution hierarchies
have been proposed mainly for meshes with subdivision connectivity.
This type of connectivity results from iteratively applying a uniform
split operator to an initially given coarse base mesh, In this paper
we demonstrate how a similar hierarchical structure can be derived
for arbitrary meshes with no restrictions on the connectivity. Since
smooth (subdivision) basis functions are no longer available in this
generalized context, we use constrained energy minimization to associate
smooth geometry with coarse levels of detail. As the energy minimization
requires one to solve a global sparse system, we investigate the
effect of various parameters and boundary conditions in order to
optimize the performance of iterative solving algorithms. Another
crucial ingredient for an effective multiresolution decomposition
of unstructured meshes is the flexible representation of detail information.
We discuss several approaches.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1999:MRH,
author = {Leif Kobbelt and Jens Vorsatz and Hans-Peter Seidel},
title = {Multiresolution Hierarchies on Unstructured Triangle Meshes},
journal = {Computational Geometry: Theory and Applications},
year = {1999},
volume = {14},
pages = {5--24},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:2000:MSD,
author = {Kobbelt, L. P. and Bareuther, T. and Seidel, H. P.},
title = {Multiresolution shape deformations for meshes with dynamic vertex
connectivity},
journal = j-CGF,
year = {2000},
volume = {19},
pages = {C249-59, 533},
number = {3},
abstract = {Multiresolution shape representation is a very effective way to decompose
surface geometry into several levels of detail. Geometric modeling
with such representations enables flexible modifications of the global
shape while preserving the detail information. Many schemes for modeling
with multiresolution decompositions based on splines, polygonal meshes
and subdivision surfaces have been proposed. We modify the classical
concept of multiresolution representation by no longer requiring
a global hierarchical structure that links the different levels of
detail. Instead we represent the detail information implicitly by
the geometric difference between independent meshes. The detail function
is evaluated by shooting rays in a normal direction from one surface
to the other without assuming a consistent tesselation. In the context
of multiresolution shape deformation, we propose a dynamic mesh representation
which adapts the connectivity during the modification in order to
maintain a prescribed mesh quality. Combining the two techniques
leads to an efficient mechanism which enables extreme deformations
of the global shape while preventing the mesh from degenerating.
During the deformation, the detail is reconstructed in a natural
and robust way. The key to the intuitive detail preservation is a
transformation map which associates points on the original and the
modified geometry with minimum distortion. We show several examples
which demonstrate the effectiveness and robustness of our approach
including the editing of multiresolution models and models with texture.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:2000:IAP,
author = {Kobbelt, L. P. and Botsch, M.},
title = {An interactive approach to point cloud triangulation},
journal = j-CGF,
year = {2000},
volume = {19},
pages = {C479-87, 545},
number = {3},
abstract = {We present an interactive system for the generation of high quality
triangle meshes that allows us to handle hybrid geometry (point,
clouds, polygons.) as input data. In order to be able to robustly
process huge data sets, we exploit graphics hardware features like
the raster manager and the z-buffer for specific sub-tasks in the
overall procedure. By this, we significantly accelerate the stitching
of mesh patches and obtain an algorithm for sub-sampling the data
points in linear time. The target resolution and the triangle alignment
in sub-regions of the resulting mesh can be controlled by adjusting
the screen resolution and viewing transformation. An intuitive user
interface provides a flexible tool for application dependent optimization
of the mesh.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:2001:FSS,
author = {Kobbelt, L. P. and Botsch, M. and Schwanecke, U. and Seidel, H. P.},
title = {Feature sensitive surface extraction from volume data},
journal = {Computer Graphics Proceedings. SIGGRAPH 2001},
year = {2001},
pages = {57-66},
abstract = {We present a new technique to extract high quality triangle meshes
from volume representations of geometric objects, The two main contributions
are an enhanced distance field representation and an extended Marching
Cubes algorithm. We show reconstructions of the well-known fandisk
dataset from its distance field representation. The approximation
error to the original polygonal model is below 0.25 %.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1998:RTS,
author = {Kobbelt, L. P. and Daubert, K. and Seidel, H. P.},
title = {Ray tracing of subdivision surfaces},
journal = {Rendering Techniques '98. Proceedings of the Eurographics Workshop},
year = {1998},
pages = {69-80, 327},
abstract = {We present the necessary theory for the integration of subdivision
surfaces into general purpose rendering systems. The most important
functionality that has to be provided via an abstract geometry interface
are the computation of surface points and normals as well as the
ray intersection test. We demonstrate how to derive the corresponding
formulas and how to construct tight bounding volumes for subdivision
surfaces. We introduce envelope meshes which have the same topology
as the control meshes but tightly circumscribe the limit surface.
An efficient and simple algorithm is presented to trace a ray recursively
through the forest of triangles emerging from adaptive refinement
of an envelope mesh.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1998:DED,
author = {Kobbelt, L. P. and Stamminger, M. F. and Seidel, H. P.},
title = {Density estimation on Delaunay triangulations},
journal = {Image and Multidimensional Digital Signal Processing '98. Proceedings},
year = {1998},
pages = {307-310},
abstract = {Density estimation is a very popular method to compute global illumination
solutions in a complex virtual scene. After simulating the reflection
paths of a large number of photons in the scene, the illumination
at a surface point is approximated by estimating the density of photon
hits in the points surrounding. We describe a novel approach to computing
such a density approximation based on Delaunay triangulation and
mesh modification techniques.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Kobbelt:1999:SWA,
author = {Kobbelt, L. P. and Vorsatz, J. and Labsik, U. and Seidel, H. P.},
title = {A shrink wrapping approach to remeshing polygonal surfaces},
journal = j-CGF,
year = {1999},
volume = {18},
pages = {C119-29, C405},
number = {3},
abstract = {Due to their simplicity and flexibility, polygonal meshes are about
to become the standard representation for surface geometry in computer
graphics applications. Some algorithms in the context of multiresolution
representation and modeling can be performed much more efficiently
and robustly if the underlying surface tesselations have the special
subdivision connectivity. We propose a novel algorithm for converting
a given unstructured triangle mesh into one having subdivision connectivity.
The basic idea is to simulate the shrink wrapping process by adapting
the deformable surface technique known from image processing. The
resulting algorithm generates subdivision connectivity meshes whose
base meshes only have a very small number of triangles. The iterative
optimization process that distributes the mesh vertices over the
given surface geometry guarantees low local distortion of the triangular
faces. We show several examples and applications including the progressive
transmission of subdivision surfaces.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Koiter:1966:OTN,
author = {Koiter, W. T.},
title = {On the nonlinear theory of thin elastic shells. {I}, {II}, {III}},
journal = {Nederl. Akad. Wetensch. Proc. Ser. B},
year = {1966},
volume = {69},
pages = {1--17, 18--32, 33--54},
mrclass = {73.00},
mrnumber = {33 \#931},
mrreviewer = {Y. C. Fung},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Koiter:1960:ACF,
author = {Koiter, W. T.},
title = {A consistent first approximation in the general theory of thin elastic
shells},
booktitle = {Proc. Sympos. Thin Elastic Shells (Delft, 1959)},
publisher = {North-Holland},
year = {1960},
pages = {12--33},
address = {Amsterdam},
mrclass = {73.65},
mrnumber = {25 \#5634},
mrreviewer = {E. Reissner},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Koiter:1973:FST,
author = {Koiter, W. T. and Simmonds, J. G.},
title = {Foundations of shell theory},
booktitle = {Theoretical and applied mechanics (Proc. Thirteenth Internat. Congr.,
Moscow Univ., Moscow, 1972)},
publisher = {Springer},
year = {1973},
pages = {150--176},
address = {Berlin},
mrclass = {73.35},
mrnumber = {56 \#4335},
mrreviewer = {H. J. Weinitschke},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{KorobovSF02,
author = {Korobov, V.I. and Sklyar, G.M. and Florinskii, V.V.},
title = {{A Minimal Polynomial for Finding the Switching Instants and the
Support Vector of the Controllability Domain}},
journal = {Differential Equations},
year = {2002},
volume = {38},
pages = {15--18},
number = {1},
owner = {sorkine},
publisher = {Springer},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kraevoy07,
author = {V. Kraevoy and D. Julius and A. Sheffer},
title = {Model Composition from Interchangeable Components},
booktitle = {Proc.\ Pacific Graph.},
year = {2007},
pages = {129-138}
}
@ARTICLE{PyramidCoordinatesIJSM06,
author = {Vladislav Kraevoy and Alla Sheffer},
title = {Mean-Value Geometry Encoding},
journal = {IJSM},
year = {2006},
volume = {12},
pages = {29--46},
number = {1},
owner = {sorkine},
timestamp = {2006.11.17}
}
@ARTICLE{Kraevoy:2004:CPC,
author = {Kraevoy, V. and Sheffer, A.},
title = {Cross-parameterization and compatible remeshing of 3{D} models},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {861--869},
number = {3},
abstract = {Many geometry processing applications, such as morphing, shape blending,
transfer of texture or material properties, and fitting template
meshes to scan data, require a bijective mapping between two or more
models. This mapping, or cross-parameterization, typically needs
to preserve the shape and features of the parameterized models, mapping
legs to legs, ears to ears, and so on. Most of the applications also
require the models to be represented by compatible meshes, i.e. meshes
with identical connectivity, based on the cross-parameterization.
In this paper we introduce novel methods for shape preserving cross-parameterization
and compatible remeshing. Our cross-parameterization method computes
a low-distortion bijective mapping between models that satisfies
user prescribed constraints. Using this mapping, the remeshing algorithm
preserves the user-defined feature vertex correspondence and the
shape correlation between the models. The remeshing algorithm generates
output meshes with significantly fewer elements compared to previous
techniques, while accurately approximating the input geometry. As
demonstrated by the examples, the compatible meshes we construct
are ideally suitable for morphing and other geometry processing applications.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ModelResizing08,
author = {Vladislav Kraevoy and Alla Sheffer and Daniel Cohen-Or and Ariel
Shamir},
title = {Non-homogeneous Resizing of Complex Models},
journal = j-TOG,
year = {2008},
volume = {27},
number = {5},
owner = {sorkine},
timestamp = {2008.10.16}
}
@ARTICLE{Kraevoy:2003:MCC,
author = {Kraevoy, V. and Sheffer, A. and Gotsman, C.},
title = {Matchmaker: constructing constrained texture maps},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {326--333},
number = {3},
abstract = {Texture mapping enhances the visual realism of 3D models by adding
fine details. To achieve the best results, it is often necessary
to force a correspondence between some of the details of the texture
and the features of the model. The most common method for mapping
texture onto 3D meshes is to use a planar parameterization of the
mesh. This, however, does not reflect any special correspondence
between the mesh geometry and the texture. The matchmaker algorithm
presented here forces user-defined feature correspondence for planar
parameterization of meshes. This is achieved by adding positional
constraints to the planar parameterization. Matchmaker allows users
to introduce scores of constraints while maintaining a valid one-to-one
mapping between the embedding and the 3D surface. Matchmaker's constraint
mechanism can be used for other applications requiring parameterization
besides texture mapping, such as morphing and remeshing. Matchmaker
begins with an unconstrained planar embedding of the 3D mesh generated
by conventional methods. It moves the constrained vertices to the
required positions by matching a triangulation of these positions
to a triangulation of the planar mesh formed by paths between constrained
vertices. The matching triangulations are used to generate a new
parameterization that satisfies the constraints while minimizing
the deviation from the original 3D geometry.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Krishnamurthy:1996:FSS,
author = {V. Krishnamurthy and M. Levoy},
title = {Fitting Smooth Surfaces to Dense Polygon Meshes},
booktitle = {SIGGRAPH 96 Conference Proceedings},
year = {1996},
editor = {Holly Rushmeier},
series = {Annual Conference Series},
pages = {313--324},
month = {August},
organization = {ACM SIGGRAPH},
publisher = {Addison Wesley},
note = {held in New Orleans, Louisiana, 04-09 August 1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Krueger:1985:VAR,
author = {Krueger, M. W. and Gionfriddo, T. and Hinrichsen, K.},
title = {{VIDEOPLACE}an artificial reality},
booktitle = {CHI '85: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1985},
pages = {35--40},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {San Francisco, California, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kry02,
author = {Kry, P. G. and James, D. L. and Pai, D. K.},
title = {Eigenskin: real time large deformation character skinning in hardware},
booktitle = {Proceedings of ACM SIGGRAPH/Eurographics Symposium on Computer Animation},
year = {2002},
pages = {153--159},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{KubiesaUW04,
author = {Kubiesa, S. and Ugail, H. and Wilson, M.},
title = {Interactive design using higher order PDEs},
journal = {The Visual Computer},
year = {December 2004},
volume = {20},
pages = {682-693(12)},
owner = {sorkine},
timestamp = {2008.10.27},
}
@INCOLLECTION{kurihara,
author = {Tsuneya Kurihara},
title = {Interactive Surface Design Using Recursive Subdivision},
booktitle = {Proceedings of Communicating with Virtual Worlds},
publisher = {Springer Verlag},
year = {1993},
month = {June},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{kuriyama-gi99,
author = {Shigeru Kuriyama and Toyohisa Kaneko},
title = {Discrete Parametrization for Deforming Arbitrary Meshes},
booktitle = {Proceedings of Graphics Interface},
year = {1999},
pages = {132--139},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Kurtenbach:1997:DGP,
author = {Kurtenbach, G. and Fitzmaurice, G. and Baudel, T. and Buxton, B.},
title = {The design of a {GUI} paradigm based on tablets, two-hands, and transparency},
booktitle = {CHI '97: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1997},
pages = {35--42},
--address = {New York, NY, USA},
--publisher = {ACM Press},
location = {Atlanta, Georgia, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{levy03dualdomain,
author = {Bruno L\'{e}vy},
title = {Dual domain extrapolation},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {364--369},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Labsik:2000:PTS,
author = {Labsik, U. and Kobbelt, L. and Schneider, R. and Seidel, H. P.},
title = {Progressive transmission of subdivision surfaces},
journal = {Computational Geometry: Theory and Applications},
year = {2000},
volume = {15},
pages = {25-39},
number = {1-3},
abstract = {Triangle meshes are a standard representation for surface geometry
in computer graphics and virtual reality applications. To achieve
high realism of the modeled objects, the meshes typically consist
of a very large number of faces. For broadcasting virtual environments
over low-bandwidth data connections like the Internet, it is highly
important to develop efficient algorithms which enable the progressive
transmission of such large meshes. We introduce a special representation
for storing and transmitting meshes with subdivision connectivity
which allows random access to the detail information. We present
algorithms for the decomposition and the reconstruction of subdivision
surfaces. With this technique, the receiver can reconstruct smooth
approximations of the original surface from a rather small amount
of data received.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lander99,
author = {J. Lander},
title = {Over my dead, polygonal body},
journal = {Game Developer Magazine},
year = {1999},
pages = {17--22},
month = {October},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{landreneau2010poisson,
author = {Landreneau, E. and Schaefer, S.},
title = {Poisson-Based Weight Reduction of Animated Meshes},
journal = j-CGF,
year = {2010},
volume = {29},
pages = {1945--1954},
number = {6},
issn = {0167-7055}
}
@ARTICLE{SchaeferScales:2010,
author = {Landreneau, E. and Schaefer, S.},
title = {Scales and Scale-Like Structures},
journal = j-CGF,
year = {2010},
volume = {29},
pages = {1653--1660},
number = {5}
}
@ARTICLE{Langer:2008:HOB,
author = {Torsten Langer and Hans-Peter Seidel},
title = {Higher Order Barycentric Coordinates},
journal = j-CGF,
year = {2008},
volume = {27},
pages = {459--466},
number = {2}
}
@ARTICLE{Lario:2002:PCS,
author = {Lario, R. and Garcia, C. and Prieto, M. and Tirado, F.},
title = {A parallel cloth simulator using multilevel algorithms},
journal = {Proceedings 16th International Parallel and Distributed Processing
Symposium},
year = {2002},
pages = {403-408},
annotation = {Certain aspects of a computer-generated world have always been difficult
to simulate. Cloth is one such example since, unlike a rigid object,
it is flexible and subject to many internal and external forces which
drive the fabric into a natural form. As a consequence of these difficulties,
realistic simulations demand a significant computational cost, which
makes parallel computing highly advantageous (Romero et al., 2000).
We analyze the OpenMP-based parallelization of a virtual cloth simulator
based on multilevel techniques that attempts to simulate the manner
in which cloth drapes. OpenMP not only offers a fast and direct way
to treat the hierarchy of data structures employed in our simulator,
but also achieves satisfactory efficiencies on the three different
platforms studied: a SGI Origin 2000, a SUN HPC 6500 and an IBM SP2.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Lee2000,
author = {Aaron Lee and Henry Moreton and Hugues Hoppe},
title = {Displaced subdivision surfaces},
booktitle = {Proc.\ of SIGGRAPH '00},
year = {2000},
pages = {85--94},
owner = {mbotsch},
timestamp = {2007.03.22}
}
@INPROCEEDINGS{MAPS98,
author = {A. W. F. Lee and W. Sweldens and P. Schr{\"o}der and L. Cowsar and
D. Dobkin},
title = {{MAPS}: Multiresolution Adaptive Parameterization of Surfaces},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1998},
pages = {95-104},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lee:2005:GBO,
author = {Lee, H. and Tong, Y. and Desbrun, M.},
title = {Geodesics-based one-to-one parameterization of 3{D} triangle meshes},
journal = {IEEE Multimedia},
year = {2005},
volume = {12},
pages = {27--33},
number = {1},
abstract = {Digital geometry is a new data type for multimedia applications. To
foster the use of 3D geometry, we introduce a piecewise linear parameterization
of 3D surfaces that we can use for texture mapping, morphing, remeshing,
and geometry imaging. Our method guarantees one-to-one mapping without
foldovers in a geometrically intuitive way.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{SeungyongMRedit99,
author = {Seungyong Lee},
title = {Interactive multiresolution editing of arbitrary meshes},
journal = j-CGF,
year = {1999},
volume = {18},
pages = {73--82},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Lee:1985:MTT,
author = {Lee, S. K. and Buxton, W. and Smith, K. C.},
title = {A multi-touch three dimensional touch-sensitive tablet},
booktitle = {CHI '85: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {1985},
pages = {21--25},
address = {New York, NY, USA},
location = {San Francisco, California, United States},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Leganchuk:1998:MCB,
author = {Leganchuk, A. and Zhai, S. and Buxton, W.},
title = {Manual and cognitive benefits of two-handed input: an experimental
study},
journal = {ACM Transactions on Computer-Human Interaction},
year = {1998},
volume = {5},
pages = {326--359},
number = {4},
--address = {New York, NY, USA},
--publisher = {ACM Press},
issn = {1073-0516},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{ARPACK,
title = {{ARPACK} Users' Guide: Solution of Large-Scale Eigenvalue Problems
with Implicitly Restarted {Arnoldi} Methods},
publisher = {SIAM},
year = {1998},
author = {R. B. Lehoucq and D. C. Sorensen and C. Yang},
address = {Philadelphia},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lennings:1995:EIA,
author = {Lennings, A. F. and Peters, J. C. and Vergeest, J. S. M.},
title = {An efficient integration of algorithms to evaluate the quality of
freeform surfaces},
journal = {Computers \& Graphics},
year = {1995},
volume = {19},
pages = {861-872},
number = {6},
abstract = {A new algorithm is presented to evaluate the quality of freeform surfaces.
The main advantages are the efficiency of the algorithm, its robustness
and the easy interpretation of the results, which could be reached
by integrating the evaluation code in a rendering program. Two existing
evaluation methods have been integrated: reflection lines and isophotes;
one new method has been created and implemented: reflection stripes.
Performance and robustness of the algorithm are discussed in relation
with its realistic results.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Levin:2006:MSS,
author = {A. Levin},
title = {Modified subdivision surfaces with continuous curvature},
booktitle = {SIGGRAPH '06: ACM SIGGRAPH 2006 Papers},
year = {2006},
pages = {1035--1040},
address = {New York, NY, USA},
location = {Boston, Massachusetts},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Levin:2004:CUO,
author = {Anat Levin and Dani Lischinski and Yair Weiss},
title = {Colorization using Optimization},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {689--694}
}
@INPROCEEDINGS{DigitalMichelangelo,
author = {Marc Levoy and Kari Pulli and Brian Curless and Szymon Rusinkiewicz
and David Koller and Lucas Pereira and Matt Ginzton and Sean Anderson
and James Davis and Jeremy Ginsberg and Jonathan Shade and Duane
Fulk},
title = {The {D}igital {M}ichelangelo project: 3{D} scanning of large statues},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {131--144},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{lepw:89,
author = {J. G. Lewis and D. J. Pierce and D. K. Wah},
title = {Multifrontal {Householder} {QR} Factorization},
institution = {Boeing Computer Services},
year = {1989},
type = {{Tech. Report}},
number = {ECA-TR-127-Revised},
address = {Seattle, WA},
kwds = {sparse, qrd},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Lewis00,
author = {J. P. Lewis and Matt Cordner and Nickson Fong},
title = {Pose space deformation: a unified approach to shape interpolation
and skeleton-driven deformation},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2000},
pages = {165--172},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Leyvand03,
author = {Tommer Leyvand and Olga Sorkine and Daniel Cohen-Or},
title = {Ray space factorization for from-region visibility},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {595--604},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{leveuvre:2003:MDS,
author = {Lo{\"i}c {Le~Veuvre}},
title = {Modelling and Deformation of Surfaces Defined over Finite Elements},
booktitle = p-SMI,
year = {2003},
pages = {175--183},
}
@ARTICLE{lile:98,
author = {C. Li and B. Li and D. J. Evans},
title = {A Generalized Successive Overrelaxation Method for Least Squares
Problems},
journal = {BIT},
year = {1998},
volume = {38},
pages = {347--355},
kwds = {ssor, iter},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Li:2005:CAA,
author = {Li, Ling and Volkov, Vasily},
title = {Cloth animation with adaptively refined meshes},
booktitle = {Proceedings of the Twenty-eighth Australasian conference on Computer
Science - Volume 38},
year = {2005},
address = {Newcastle, Australia},
publisher = {Australian Computer Society, Inc.},
note = {1082173107-113},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{LiBaoGuQin08,
author = {Xin Li and Yunfan Bao and Xiaohu Guo and Miao Jin and Xianfeng Gu
and Hong Qin},
title = {Globally Optimal Surface Mapping for Surfaces with Arbitrary Topology},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2008},
volume = {14},
pages = {805--819},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Linnenbrugger:2004:AHT,
author = {Linnenbrugger, N. I. and Webber, R. L. and Kobbelt, L. P. and Lehmann,
T. M.},
title = {Automated hybrid TACT reg volume reconstructions},
journal = {Methods of Information in Medicine},
year = {2004},
volume = {43},
pages = {315-319},
number = {4},
abstract = {The paper aims to design, implement in Java trade and evaluate a method
and means for the automated localization of artificial landmarks
in optical images for tuned-aperture computed tomography reg (TACT
reg) that allows the replacement of radiographic with optical landmarks.
Circular, colored, and optical landmarks were designed to provide
flexibility with regard to landmark constellation,imaging equipment,
and lighting conditions. The landmark detection was based on Hough
transforms (HT) for ellipses and lines. The HT for ellipses was extended
to enable selective detection of bright ellipses on a dark background
and vice versa, and the number of irrelevant votes in the accumulator
arrays was reduced. An experiment was performed in vitro to test
the automated landmark localization scheme, verify registration accuracy,
and measure the required computation time. A visual evaluation of
the tomographic slices that were produced using the new method revealed
good registration accuracy. A comparison to tomographic slices similarly
produced by means of conventional TACT showed identical results.
The algorithm ran sufficiently fast on standard hardware to allow
landmark localization in real time during successive image acquisition
in clinical applications. The proposed method provides robust automated
localization of landmarks in optical images. Using a hybrid imaging
system, TACT can now be clinically applied without manual interaction
of a human operator and without radiopaque landmarks, which might
cover anatomic details of diagnostic interest.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{LipmanGal07,
author = {Yaron Lipman and Daniel Cohen-Or and Ran Gal and David Levin},
title = {Volume and shape preservation via moving frame manipulation},
journal = j-TOG,
year = {2007},
volume = {26},
number = {1},
address = {New York, NY, USA},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Lipman:2007:GPM,
author = {Yaron Lipman and Johannes Kopf and Daniel Cohen-Or and David Levin},
title = {{GPU}-assisted Positive Mean Value Coordinates for Mesh Deformations},
booktitle = p-SGP,
year = {2007},
pages = {117--124}
}
@ARTICLE{GreenCoordinates08,
author = {Yaron Lipman and David Levin and Daniel Cohen-Or},
title = {Green Coordinates},
journal = {ACM Trans.\ Graph.},
year = {2008},
volume = {27},
number = {3},
address = {New York, NY, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{LapEditingSpecialIssue05,
author = {Yaron Lipman and Olga Sorkine and Marc Alexa and Daniel Cohen-Or
and David Levin and Christian R{\"o}ssl and Hans-Peter Seidel},
title = {Laplacian Framework for Interactive Mesh Editing},
journal = {International Journal of Shape Modeling},
year = {2005},
volume = {11},
pages = {43--62},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{lipman04diffcoord,
author = {Yaron Lipman and Olga Sorkine and Daniel Cohen-Or and David Levin},
title = {Differential Coordinates for Interactive Mesh Editing},
booktitle = {International Conference on Shape Modeling and Applications},
year = {2004},
pages = {181--190},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{DiffCoordsEditing:2004,
author = {Yaron Lipman and Olga Sorkine and Daniel Cohen-Or and David Levin
and Christian R\"{o}ssl and Hans-Peter Seidel},
title = {Differential Coordinates for Interactive Mesh Editing},
booktitle = p-SMI,
year = {2004},
pages = {181--190},
}
@INPROCEEDINGS{Lipman04,
author = {Yaron Lipman and Olga Sorkine and Daniel Cohen-Or and David Levin
and Christian R\"{o}ssl and Hans-Peter Seidel},
title = {Differential Coordinates for Interactive Mesh Editing},
booktitle = p-SMI,
year = {2004},
pages = {181--190}
}
@ARTICLE{lipman05lric,
author = {Yaron Lipman and Olga Sorkine and David Levin and Daniel Cohen-Or},
title = {Linear Rotation-invariant Coordinates for Meshes},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {479--487},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{lirt:79,
author = {R. J. Lipton and D. J. Rose and R. E. Tarjan},
title = {Generalized Nested Dissection},
journal = {SIAM J. Numer. Anal. },
year = {1979},
volume = {16},
pages = {346--358},
kwds = {sparse, nestdis},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lischinski:2006:ILA,
author = {Lischinski, Dani and Farbman, Zeev and Uyttendaele, Matt and Szeliski,
Richard},
title = {Interactive local adjustment of tonal values},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {646--653},
number = {3}
}
@INPROCEEDINGS{Litke:2001:FSS,
author = {N. Litke and A. Levin and P. Schr{\"o}der},
title = {Fitting subdivision surfaces},
booktitle = {Proceedings of IEEE Visualization},
year = {2001},
pages = {319--324},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Liu:1998:SSC,
author = {Liu, Jen-Duo and Ko, Ming-Tat and Chang, Ruei-Chuan},
title = {A simple self-collision avoidance for cloth animation},
journal = {Computers \& Graphics},
year = {1998},
volume = {22},
pages = {117-128},
number = {1},
annotation = {This paper discusses the self-collision avoidance problem in simulating
the dynamic behavior of deformable cloth. It is not an easy task
to simulate realistically the response of cloth in various types
of complicated sell-collisions. In this paper, the bounding box technique
in addition to ordinary prechecking for collision detection is used
to avoid self-collision. Instead of avoiding self-collision of cloth
triangles, we relax to avoid the collision of the bounding boxes
of cloth triangles. Some constraints are enforced on the vertices
of the cloth triangles to prevent their bounding boxes from penetrating
in the direction of collision. The experimental results show that
the relaxed self-collision avoidance method can create realistic
cloth behavior and wrinkling formation processes. Since the types
of interaction between bounding boxes are simple, our method is simple
but robust in avoiding self-collisions.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Liu:2008:ALA,
author = {Ligang Liu and Lei Zhang and Yin Xu and Craig Gotsman and Steven
J. Gortler},
title = {A Local/Global Approach to Mesh Parameterization},
journal = {Comput.\ Graph.\ Forum},
year = {2008},
volume = {27},
pages = {1495--1504},
number = {5}
}
@ARTICLE{llamas03twister,
author = {Ignacio Llamas and Byungmoon Kim and Joshua Gargus and Jarek Rossignac
and Chris D. Shaw},
title = {Twister: a space-warp operator for the two-handed editing of 3D shapes},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {663--668},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Llanas:1994:AOA,
author = {Llanas, B. and Moreno, C.},
title = {Analysis of a model of elastoplastic shells displaying mixed hardening},
journal = {Nonlinear Anal.},
year = {1994},
volume = {23},
pages = {1569--1586},
number = {12},
fjournal = {Nonlinear Analysis. Theory, Methods \& Applications. An International
Multidisciplinary Journal. Series A: Theory and Methods},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Loop:2004:SOS,
author = {C. Loop},
title = {Second order smoothness over extraordinary vertices},
booktitle = {SGP '04: Proceedings of the 2004 Eurographics/ACM SIGGRAPH symposium
on Geometry processing},
year = {2004},
pages = {165--174},
address = {New York, NY, USA},
location = {Nice, France},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{loop94,
author = {C. Loop},
title = {Smooth Spline Surfaces over Irregular Meshes},
booktitle = {Computer Graphics Proceedings},
year = {1994},
series = {Annual Conference Series},
pages = {303--310},
organization = {ACM Siggraph},
annote = {Arbitrary topology generates quadratic splines in regular regions
and as high as degre 4 in irregular regions. Does one subdivision
step to fix topology and then generates large numbers of quartic
triangular Bezier patches. No mention of interpolation, but seems
possible along the lines of Peters because of the Bezier-ness of
the approach.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MASTERSTHESIS{loop87,
author = {C. Loop},
title = {Smooth Subdivision Surfaces Based on Triangles},
school = {University of Utah},
year = {1987},
address = {Department of Mathematics},
annote = {$C^2$ everywhere except at extraordinary points based on quartic
triangular {B}-splines.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{loop90,
author = {C. Loop and T. DeRose},
title = {Generalized {B}-Spline Surfaces of Arbitrary Topology},
journal = {Computer Graphics},
year = {1990},
volume = {24},
pages = {347--356},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Loop08,
author = {Charles Loop and Scott Schaefer},
title = {Approximating {C}atmull-{C}lark {S}ubdivision {S}urfaces with {B}icubic
{P}atches},
journal = j-TOG,
year = {2008},
volume = {27},
pages = {1--11},
number = {1},
address = {New York, NY, USA},
issn = {0730-0301},
}
@ARTICLE{Loop:1989:AMG,
author = {Charles T. Loop and Tony D. DeRose},
title = {A multisided generalization of B\'{e}zier surfaces},
journal = j-TOG,
year = {1989},
volume = {8},
pages = {204--234},
number = {3},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Loos:1999:MSF,
author = {Loos, J. and Greiner, G. and Seidel, H. P.},
title = {Modeling of surfaces with fair reflection line pattern},
journal = {Proceedings Shape Modeling International '99. International Conference
on Shape Modeling and Applications},
year = {1999},
pages = {256-263},
abstract = {Inspection of reflection line patterns is a standard way to check
the quality of free form surfaces. In this paper, we describe an
approach which enables the designer to control during the modeling
process the reflection line pattern by approximating a specified
family of reflection lines. Our method directly operates on the commonly
used B-spline format, and produces fair surfaces. The approach is
based on the minimization of a suitable error functional. A minimization
algorithm based on data dependent quadratic error functionals provides
an efficient numerical solution. The potential of the method will
be demonstrated by applying it to two standard modeling problems:
"surface fairing" and "surface reconstruction".},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Lorensen:1987:MCH,
author = {W. E. Lorensen and H. E. Cline},
title = {Marching Cubes: {A} High Resolution 3{D} Surface Construction Algorithm},
booktitle = {Computer Graphics (SIGGRAPH '87 Proceedings)},
year = {1987},
editor = {Maureen C. Stone},
volume = {21},
pages = {163--169},
month = {July},
conference = {held in Anaheim, California; 27 -- 31 July 1987},
keywords = {medical imaging, surface reconstruction},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{ldw:spock,
author = {M. Lounsbery and T. D. DeRose and J. Warren},
title = {Multiresolution Surfaces of Arbitrary Topological Type},
institution = {University of Washington},
year = {1993},
type = {Department of Computer Science and Engineering},
number = {93-10-05},
month = {October},
note = {Updated version available as 93-10-05b, January, 1994},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lounsbery97,
author = {Michael Lounsbery and Tony D. De{R}ose and Joe Warren},
title = {Multiresolution Analysis for Surfaces of Arbitrary Topological Type},
journal = j-TOG,
year = {1997},
volume = {16},
pages = {34--73},
number = {1},
month = {January},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Love:1888:SFV,
author = {A. E. H. Love},
title = {The Small Free Vibrations and Deformation of a Thin Elastic Shell},
journal = {Phil. Trans.},
year = {1988},
volume = {179},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Love:1944:TMT,
title = {A treatise on the Mathematical Theory of Elasticity},
publisher = {Dover Publications},
year = {1944},
author = {A. E. H. Love},
address = {New York},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{luba:96,
author = {S.-M. Lu and J. L. Barlow},
title = {Multifrontal Computation with the Orthogonal Factors of Sparse Matrices},
journal = {SIAM J. Matrix Anal. Appl.},
year = {1996},
volume = {17},
pages = {658--679},
kwds = {sparse, qrd},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Luebke02,
title = {Level of Detail for 3{D} Graphics},
publisher = {Elsevier Science Inc.},
year = {2002},
author = {David Luebke and Benjamin Watson and Jonathan D. Cohen and Martin
Reddy and Amitabh Varshney},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lurig:2000:HSD,
author = {Lurig, C. and Kobbelt, L. and Ertl, T.},
title = {Hierarchical solutions for the deformable surface problem in visualization},
journal = {Graphical Models},
year = {2000},
volume = {62},
pages = {2-18},
number = {1},
abstract = {In this paper we present a hierarchical approach for the deformable
surface technique. This technique is a three dimensional extension
of the snake segmentation method. We use it in the context of visualizing
three dimensional scalar data sets. In contrast to classical indirect
volume visualization methods, this reconstruction is not based on
iso-values but on boundary information derived from discontinuities
in the data. We propose a multilevel adaptive finite difference solver,
which generates a target surface minimizing an energy functional
based on an internal energy of the surface and an outer energy induced
by the gradient of the volume. The method is attractive for preprocessing
in numerical simulation or texture mapping. Red-green triangulation
allows adaptive refinement of the mesh. Special considerations help
to prevent self interpenetration of the surfaces. We also show some
techniques that introduce the hierarchical aspect into the inhomogeneity
of the partial differential equation. The approach proves to be appropriate
for data sets that contain a collection of objects separated by distinct
boundaries. These kind of data sets often occur in medical and technical
tomography, as we demonstrate in a few examples.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Lurig:1998:DSF,
author = {Lurig, C. and Kobbelt, L. and Ertl, T.},
title = {Deformable surfaces for feature based indirect volume rendering},
journal = {Proceedings. Computer Graphics International (Cat. No.98EX149)},
year = {1998},
pages = {752-760},
abstract = {The authors present an indirect volume visualization method, based
on the deformable surface model, which is a three dimensional extension
of the snake segmentation method. In contrast to classical indirect
volume visualization methods, this model is not based on iso-values
but on boundary information. Physically speaking it simulates a combination
of a thin plate and a rubber skin, that is influenced by forces implied
by feature information extracted from the given data set. The approach
proves to be appropriate for data sets that represent a collection
of objects separated by distinct boundaries. These kind of data sets
often occur in medical and technical tomography, as they demonstrate
by a few examples. They propose a multilevel adaptive finite difference
solver which generates a target surface minimizing an energy functional
based on an internal energy of the surface and an outer energy induced
by the gradient of the volume. This functional tends to produce very
regular triangular meshes compared to results of the marching cubes
algorithm. It makes this method attractive for meshing in numerical
simulation or texture mapping. Red-green triangulation allows an
adaptive refinement of the mesh. Special considerations have been
made to prevent self inter-penetration of the surfaces.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Modo,
author = {{Luxology Inc.}},
title = {{Modo 401}},
month = {July},
year = {2010},
note = {http://www.luxology.com/modo/}
}
@INPROCEEDINGS{Lyche93,
author = {Tom Lyche},
title = {Knot removal for spline curves and surfaces},
booktitle = {Approximation Theory {VII}},
year = {1993},
editor = {E. W. Cheney and C. K. Chui and L. L. Schumaker},
pages = {207--227},
publisher = {Academic Press, Boston},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Bruno06,
author = {Bruno L{\'e}vy},
title = {{L}aplace-{B}eltrami Eigenfunctions: Towards an Algorithm that Understands
Geometry},
booktitle = p-SMI,
year = {2006},
note = {Invited talk},
owner = {sorkine},
timestamp = {2006.09.29}
}
@INPROCEEDINGS{Levy01,
author = {Bruno L{\'e}vy},
title = {Constrained texture mapping for polygonal meshes},
booktitle = {Proceedings ACM SIGGRAPH},
year = {2001},
pages = {417--424},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Levy:2002:LSC,
author = {L{\'e}vy, B. and Petitjean, S. and Ray, N. and Maillot, J.},
title = {Least squares conformal maps for automatic texture atlas generation},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {362--371},
number = {3},
abstract = {A texture atlas is an efficient color representation for 3D paint
systems. The model to be textured is decomposed into charts homeomorphic
to discs, each chart is parameterized, and the unfolded charts are
packed in texture space. Existing texture atlas methods for triangulated
surfaces suffer from several limitations, requiring them to generate
a large number of small charts with simple borders. The discontinuities
between the charts cause artifacts, and make it difficult to paint
large areas with regular patterns. In this paper, our main contribution
is a new quasi-conformal parameterization method, based on a least-squares
approximation of the Cauchy-Riemann equations. The so-defined objective
function minimizes angle deformations, and we prove the following
properties: the minimum is unique, independent of a similarity in
texture space, independent of the resolution of the mesh and cannot
generate triangle flips. The function is numerically well behaved
and can therefore be very efficiently minimized. Our approach is
robust, and can parameterize large charts with complex borders. We
also introduce segmentation methods to decompose the model into charts
with natural shapes, and a new packing algorithm to gather them in
texture space. We demonstrate our approach applied to paint both
scanned and modeled data sets.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{LSCM,
author = {Bruno L{\'{e}}vy and Sylvain Petitjean and Nicolas Ray and J\'{e}r\^{o}me
Maillot},
title = {Least squares conformal maps for automatic texture atlas generation},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2002},
pages = {362--371},
location = {San Antonio, Texas},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{MacCracken:1996:FFD,
author = {Ron {MacCracken} and Kenneth I. Joy},
title = {{Free-Form} Deformations with Lattices of Arbitrary Topology},
booktitle = {SIGGRAPH 96 Conference Proceedings},
year = {1996},
editor = {Holly Rushmeier},
series = {Annual Conference Series},
pages = {181--188},
month = aug,
organization = {ACM SIGGRAPH},
publisher = {Addison Wesley},
note = {held in New Orleans, Louisiana, 04-09 August 1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{MacNeal:1985:PSS,
author = {MacNeal, R. H. and Harder, R. L.},
title = {A proposed standard set of problems to test finite element accuracy},
journal = {Computer and Structures},
year = {1985},
volume = {20},
pages = {121},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Magnenat-Thalmann:1988:JLD,
author = {Nadia Magnenat-Thalmann and Richard Laperri\`{e}re and Daniel Thalmann},
title = {Joint-dependent local deformations for hand animation and object
grasping},
booktitle = {Graphics Interface},
year = {1988},
pages = {26--33}
}
@ARTICLE{maillot01subdiv,
author = {Jerome Maillot and Jos Stam},
title = {A Unified Subdivision Scheme for Polygonal Modeling},
journal = j-CGF,
year = {2001},
volume = {20},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Maillot:1993:ITM,
author = {Maillot, J. and Yahia, H. and Verroust, A.},
title = {Interactive texture mapping},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {1993},
pages = {27--34},
abstract = {This paper describes a new approach to texture mapping. A global method
to lower the distortion of the mapped image is presented; by considering
a general optimization function we view the mapping as an energy-minimization
process. We have constructed an interactive texture tool, which is
fast and easy to use, to manipulate atlases in texture space. We
present the tool's large set of interactive operations on mapping
functions. We also introduce an algorithm which automatically generates
an atlas for any type of object. These techniques allow the mapping
of different textures onto the same object and handle non-continuous
mapping functions, needed for complicated mapped objects.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Malik:2004:VTT,
author = {Malik, S. and Laszlo, J.},
title = {Visual touchpad: a two-handed gestural input device},
journal = {Proceedings of the 6th international conference on Multimodal interfaces},
year = {2004},
pages = {289--296},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Mandal:DSS:1997,
author = {Chhandomay Mandal and Hong Qin and Baba C. Vemuri},
title = {Dynamic Smooth Subdivision Surfaces for Data Visualization},
booktitle = {In Proceedings of IEEE Visualization '97},
year = {1997},
pages = {371--377},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Mangan:1999:PSM,
author = {A. P. Mangan and R. T. Whitaker},
title = {Partitioning {3D} Surface Meshes Using Watershed Segmentation},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {1999},
volume = {5},
pages = {308--321},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Manson:2011:HDLRM,
author = {Josiah Manson and Scott Schaefer},
title = {Hierarchical Deformation of Locally Rigid Meshes},
journal = j-CGF,
year = {2011},
volume = {30},
pages = {2387--2396},
number = {8}
}
@ARTICLE{Marinov2007,
author = {Martin Marinov and Mario Botsch and Leif Kobbelt},
title = {{GPU}-Based Multiresolution Deformation using Approximate Normal
Field Reconstruction},
journal = {Journal of Graphics Tools},
year = {2007},
owner = {mbotsch},
timestamp = {2007.03.23}
}
@ARTICLE{Marinov:2005:AGS,
author = {Marinov, M. and Kobbelt, L.},
title = {Automatic generation of structure preserving multiresolution models},
journal = j-CGF,
year = {2005},
volume = {24},
pages = {479-486},
number = {3},
abstract = {We are proposing a multiresolution representation, which uses a subdivision
surface as a smooth base surface with respect to which a high resolution
mesh is defined by normal displacement. While this basic representation
is quite straightforward, our actual contribution lies in the automatic
generation of such a representation. Given a high resolution mesh,
our algorithm is designed to derive a subdivision control mesh whose
structure is properly adjusted and aligned to the major geometric
features. This implies that the control vertices of the subdivision
surface not only control globally smooth deformations but in addition
that these deformations are meaningful in the sense that their support
and shape correspond to the characteristic structure of the input
mesh. This is achieved by using a new decimation scheme for general
polygonal meshes (not just triangles) that is based on face merging
instead of edge collapsing. A face-based integral metric makes the
decimation scheme very robust such that we can obtain extremely coarse
control meshes which in turn allow for deformations with large support.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Marinov:2004:DAQ,
author = {Marinov, M. and Kobbelt, L.},
title = {Direct anisotropic quad-dominant remeshing},
journal = {Proceedings. 12th Pacific Conference on Computer Graphics and Applications},
year = {2004},
pages = {207-216},
abstract = {We present an extension of the anisotropic polygonal remeshing technique
developed by Alliez et al. (2003). Our algorithm does not rely on
a global parameterization of the mesh and therefore is applicable
to arbitrary genus surfaces. We show how to exploit the structure
of the original mesh in order to perform efficiently the proximity
queries required in the line integration phase, thus improving dramatically
the scalability and the performance of the original algorithm. Finally,
we propose a technique for producing conforming quad-dominant meshes
in isotropic regions as well by propagating directional information
from the anisotropic regions.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{markosian99skin,
author = {Lee Markosian and Jonathan M. Cohen and Thomas Crulli and John Hughes},
title = {Skin: a constructive approach to modeling free-form shapes},
booktitle = {ACM SIGGRAPH},
year = {1999},
pages = {393--400},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Markosian:1997:RNR,
author = {Lee Markosian and Michael A. Kowalski and Samuel J. Trychin and Lubomir
D. Bourdev and Daniel Goldstein and John F. Hughes},
title = {Real-Time Nonphotorealistic Rendering},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1997},
pages = {415--420},
month = aug,
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{MW:2001:DMVI,
author = {Marsden, J. E. and M. West},
title = {Discrete mechanics and variational integrators},
journal = {Acta Numerica},
year = {2001},
pages = {357--514},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{ExposureCEIG:2008,
author = {Miguel Martin and Roland Fleming and Olga Sorkine and Diego Gutierrez},
title = {Understanding exposure for reverse tone mapping},
booktitle = {Proceedings of CEIG},
year = {2008},
pages = {189--198},
publisher = {EG Spanish Chapter}
}
@INPROCEEDINGS{MasudaNonManifold2007,
author = {Masuda, H. and Ogawa, K.},
title = {Application of Interactive Deformation to Assembled Mesh Models for
CAE Analysis},
booktitle = {ASME International Design Engineering Technical Conferences},
year = {2007},
owner = {sorkine},
timestamp = {2008.10.22}
}
@ARTICLE{Masuda2007,
author = {Hiroshi Masuda and Yasuhiro Yoshioka and Yoshiyuki Furukawa},
title = {Preserving Form Features in Interactive Mesh Deformation},
journal = {Computer Aided Design},
year = {2007},
volume = {39},
pages = {361-368},
number = {5},
owner = {sorkine},
timestamp = {2008.10.21}
}
@PHDTHESIS{mats:94,
author = {P. Matstoms},
title = {Sparse {QR} Factorization with Applications to Linear Least Squares
Problems},
school = {Department of Mathematics, Link{\"o}ping University},
year = {1994},
type = {{Ph.D.} thesis},
address = {Sweden},
kwds = {sparse, qrd, multfr},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{mats:94a,
author = {P. Matstoms},
title = {Sparse {QR} Factorization in {MATLAB}},
journal = {ACM Trans. Math. Software},
year = {1994},
volume = {20},
pages = {136--159},
kwds = {sparse, qrd, multfr},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{mats:91,
author = {P. Matstoms},
title = {The Multifrontal Solution of Sparse Linear Least Squares Problems},
school = {Department of Mathematics, Link{\"o}ping University},
year = {1991},
type = {{Lic.} thesis},
address = {Sweden},
kwds = {sparse, qrd, multfr},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Matsushita:1997:HDF,
author = {Matsushita, N. and Rekimoto, J.},
title = {HoloWall: designing a finger, hand, body, and object sensitive wall},
journal = {Proceedings of the 10th annual ACM symposium on User interface software
and technology},
year = {1997},
pages = {209--210},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Matsuzawa:2003:FEA,
author = {Matsuzawa, Yuki and Suzuki, Takashi and Tsuchiya, Takuya},
title = {Finite element approximation of $H$-surfaces},
journal = {Math. Comp.},
year = {2003},
volume = {72},
pages = {607--617 (electronic)},
number = {242},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{3DS,
author = {3ds Max},
howpublished = {Autodesk, \texttt{http://www.autodesk.com/\\3dsmax}},
year = {2007},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Max:1989:SAP,
author = {Max, N.},
title = {Smooth appearance for polygonal surfaces},
journal = {Visual Computer},
year = {1989},
volume = {5},
pages = {160-173},
number = {3},
abstract = {Current shading methods for polygonal approximations to smooth surfaces
reveal the polygon edges by lack of smoothness in the shading, highlights,
texture, reflection lines, intersections, profiles, and shadows.
These defects are eliminated by interpolating the perspective depth
in screen coordinates with a /b C//sup 1/ piecewise-polynomial function,
defined over triangles in the screen plane. The three eye-space components
of the surface normal, and the two texture parameters, are separately
interpolated with similar /b C/ /sup 1/ functions. For smooth intersections,
the depth comparison test of the scan-line algorithm is replaced
by a simple test which uses closed-form solutions to polynomials
of degree 2, 3, or 4. When the scan lines arise from scan planes
containing the eye and the light source, a version of the shadow
volume algorithm can also generate smooth cast shadows.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{maxis07spore,
author = {Maxis},
title = {{SPORE}~\texttrademark},
howpublished = {Electronic Arts, \texttt{www.spore.com}},
year = {2007},
owner = {sorkine},
timestamp = {2008.10.28}
}
@MISC{Maya,
author = {Maya},
howpublished = {Autodesk, \texttt{http://www.autodesk.com/maya}},
year = {2014},
}
@INPROCEEDINGS{Mazarak:1999:AEO,
author = {Oleg Mazarak and Claude Martins and John Amanatides},
title = {Animating Exploding Objects},
booktitle = {Graphics Interface '99},
year = {1999},
pages = {211--218},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{McAdams:2011,
author = {McAdams, Aleka and Zhu, Yongning and Selle, Andrew and Empey, Mark
and Tamstorf, Rasmus and Teran, Joseph and Sifakis, Eftychios},
title = {Efficient elasticity for character skinning with contact and collisions},
journal = {ACM Trans. Graph.},
year = {2011},
volume = {30},
pages = {37:1--37:12},
month = aug,
acmid = {1964932},
address = {New York, NY, USA},
articleno = {37},
issn = {0730-0301},
issue = {4},
issue_date = {July 2011},
keywords = {corotated elasticity, elastic deformations, physics-based modeling,
skinning},
numpages = {12},
}
@ARTICLE{McCann:2008:Gradients,
author = {James McCann and Nancy S. Pollard},
title = {Real-Time Gradient-Domain Painting},
journal = {ACM Trans.\ Graph.},
year = {2008},
volume = {27},
number = {3}
}
@ARTICLE{mcdonnell2007pfp,
author = {McDonnell, K.T. and Qin, H.},
title = {{PB-FFD: A Point-Based Technique for Free-Form Deformation}},
journal = {Journal of Graphics Tools},
year = {2007},
volume = {12},
pages = {25--41},
number = {3},
owner = {sorkine},
publisher = {AK Peters},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{McDonnell:2000:DSA,
author = {Kevin T. McDonnell and Hong Qin},
title = {Dynamic Sculpting and Animation of Free-form Subdivision Solids},
booktitle = {Computer Animation 2000},
year = {2000},
pages = {126--133},
month = may,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{McInerney:1995:DFE,
author = {McInerney, T. and Terzopoulos, D.},
title = {A dynamic finite element surface model for segmentation and tracking
in multidimensional medical images with application to cardiac 4D
image analysis},
journal = {Computerized Medical Imaging and Graphics},
year = {1995},
volume = {19},
pages = {69-83},
number = {1},
abstract = {Presents a physics-based approach to anatomical surface segmentation,
reconstruction, and tracking in multidimensional medical images.
The approach makes use of a dynamic balloon model-a spherical thin-plate-under-tension
surface spline which deforms elastically to fit the image data. The
fitting process is mediated by internal forces stemming from the
elastic properties of the spline and external forces which are produced
from the data. The forces interact in accordance with Lagrangian
equations of motion that adjust the model's deformational degrees
of freedom to fit the data. We employ the finite element method to
represent the continuous surface in the form of weighted sums of
local polynomial basis functions. We use a quintic triangular finite
element whose nodal variables include positions as well as the first
and second partial derivatives of the surface. We describe a system,
implemented on a high-performance graphics workstation, which applies
the model fitting technique to the segmentation of the cardiac left
ventricle (LV) surface in volume (3D) CT images and LV tracking in
dynamic volume (4D) CT images to estimate its nonrigid motion over
the cardiac cycle. The system features a graphical user interface
which minimizes error by affording specialist users interactive control
over the dynamic model fitting process.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Meek00,
author = {D. S. Meek and D. J. Walton},
title = {On surface normal and {G}aussian curvature approximations given data
sampled from a smooth surface},
journal = {Computer Aided Geometric Design},
year = {2000},
volume = {17},
pages = {521--543},
number = {6}
}
@ARTICLE{Mehl2005,
author = {Mehl, A. and Blanz, V. and Hickel, R.},
title = {Biogeneric tooth: a new mathematical representation for tooth morphology
in lower first molars.},
journal = {European Journal of Oral Sciences},
year = {2005},
volume = {113},
pages = {333--340},
number = {4},
month = {August},
owner = {sorkine},
timestamp = {2008.10.09}
}
@ARTICLE{MeijerinkVa77,
author = {J.~A. Meijerink and H.~A. {van der Vorst}},
title = {An iterative solution method for linear systems of which the coefficient
matrix is a symmetric {M}-matrix},
journal = {Mathemathics of Computation},
year = {1977},
volume = {31},
pages = {148--162}
}
@ARTICLE{Merry:2006:AST,
author = {Merry, Bruce and Marais, Patrick and Gain, James},
title = {Animation space: A truly linear framework for character animation},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {1400--1423},
number = {4},
acmid = {1183294},
issn = {0730-0301},
keywords = {Character animation, parametrization, skinning},
numpages = {24},
}
@INCOLLECTION{meyer03ddo,
author = {Mark Meyer and Mathieu Desbrun and Peter Schr{\"o}der and Alan H.
Barr},
title = {Discrete Differential-Geometry Operators for Triangulated 2-Manifolds},
booktitle = {{V}isualization and {M}athematics III},
publisher = {Springer-Verlag},
year = {2003},
pages = {35--57},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Mezger:2002:PCD,
author = {Mezger, J. and Kimmerle, S. and Etzmuss, O.},
title = {Progress in collision detection and response techniques for cloth
animation},
journal = {Proceedings 10th Pacific Conference on Computer Graphics and Applications},
year = {2002},
pages = {444-445},
annotation = {In the animation of deformable objects, collision detection and response
are crucial for performance. Furthermore, a physically correct cloth
simulation requires robust collision avoidance, since any overlapping
is visible and often results in expensive correction procedures.
Much progress has been achieved in improving the numerical solution,
and therefore most animations employ large time steps for fast simulations.
This even more demands for accurate collision detection and response.
In this work we show how collision detection for deformable meshes
can be extended to detect proximities in advance. Several heuristics
are introduced to save computation time, and constraints ensure an
accurate collision response.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Miliron2002,
author = {Tim Milliron and Robert J. Jensen and Ronen Barzel and Adam Finkelstein},
title = {A framework for geometric warps and deformations},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {20--51},
number = {1},
address = {New York, NY, USA},
bdsk-url-1 = {http://doi.acm.org/10.1145/504789.504791},
}
@ARTICLE{Mohr:2003:BEA,
author = {Alex Mohr and Michael Gleicher},
title = {Building Efficient, Accurate Character Skins From Examples},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {562--568},
number = {3},
month = jul
}
@ARTICLE{Monk87,
author = {P. Monk},
title = {A mixed finite element method for the biharmonic equation},
journal = {SIAM J. Numer. Anal.},
year = {1987},
volume = {24},
pages = {737--749},
number = {4},
address = {Philadelphia, PA, USA},
issn = {0036-1429},
owner = {sorkine},
publisher = {Society for Industrial and Applied Mathematics},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Moore:1988:CDA,
author = {Matthew Moore and Jane Wilhelms},
title = {Collision Detection and Response for Computer Animation},
booktitle = {Computer Graphics (Proceedings of SIGGRAPH 88)},
year = {1988},
volume = {22},
number = {4},
pages = {289--298},
month = aug,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{moreton92funcopt,
author = {Henry P. Moreton and Carlo H. S\'{e}quin},
title = {Functional optimization for fair surface design},
booktitle = {ACM SIGGRAPH},
year = {1992},
pages = {167--176},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Morin:2001:ASS,
author = {G{\'{e}}raldine Morin and Joe Warren and Henrik Weimer},
title = {A subdivision scheme for surfaces of revolution},
journal = {Computer Aided Geometric Design},
year = {2001},
volume = {18},
pages = {483--502},
number = {5},
month = {June},
note = {ISSN 0167-8396},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Morley:1971:CMP,
author = {Morley, L. S. D.},
title = {On the constant moment plate bending element},
journal = {Journal of Strain Analysis},
year = {1971},
volume = {6},
pages = {10},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Museth02,
author = {Ken Museth and David E. Breen and Ross T. Whitaker and Alan H. Barr},
title = {Level set surface editing operators},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {2002},
pages = {330--338}
}
@ARTICLE{NDri:2003:CMC,
author = {N'Dri, N. A. and Shyy, W. and Tran-Son-Tay, R.},
title = {{Computational Modeling of Cell Adhesion and Movement Using a Continuum-Kinetics
Approach}},
journal = {Biophys. J.},
year = {2003},
volume = {85},
pages = {2273-2286},
number = {4},
abstract = {Adhesion of leukocytes to substrate involves the coupling of disparate
length and timescales between molecular mechanics and macroscopic
transport, and existing models of cell adhesion do not use full cellular
information. To address these challenges, a multiscale computational
approach for studying the adhesion of a cell on a substrate is developed
and assessed. The cellular level model consists of a continuum representation
of the field equations and a moving boundary tracking capability
to allow the cell to change its shape continuously. At the receptor-ligand
level, a bond molecule is mechanically represented by a spring. Communication
between the macro/micro- and nanoscale models is facilitated interactively
during the computation. The computational model is assessed using
an adherent cell, rolling and deforming along the vessel wall under
imposed shear flows. Using this approach, we first confirm existing
numerical and experimental results. In this study, the intracellular
viscosity and interfacial tension are found to directly affect the
rolling of a cell. Our results also show that the presence of a nucleus
increases the bond lifetime, and decreases the cell rolling velocity.
Furthermore, it is found that a cell with a larger diameter rolls
faster, and decreases the bond lifetime. This study shows that cell
rheological properties have significant effects on the adhesion process
contrary to what has been hypothesized in most literature.},
eprint = {http://www.biophysj.org/cgi/reprint/85/4/2273.pdf},
owner = {sorkine},
timestamp = {2008.10.27},
}
@ARTICLE{nakano-97,
author = {Aiichiro Nakano},
title = {Parallel multilevel preconditioned conjugate-gradient approach
to variable-charge molecular dynamics},
journal = {Computer Physics Communications},
year = {1997},
volume = {104},
pages = {59--69},
abstract = {
FMM, only up to quadruples, ap 50 24 Million points- main paper that
explains FMM and
presents results. The partition however, is explained elsewhere.
},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{nakano-01,
author = {Aiichiro Nakano and others},
title = {Scalable Atomistic Simulation ALgorithms for Materials Research},
booktitle = {Proceedings of Supercomputing},
year = {2001},
series = {The SCxy Conference series},
address = {Denver, Colorado},
month = {November},
organization = {ACM/IEEE},
abstract = {
Overview of several methods for materials research:
Density function theory, cutoff MD, and MD with electrostatics. (VCMD)
Up to 100s of processors on Cray T3E and IBM SP3.
Max size with CUTOFF MD was 6.44 billion atoms
For FMM:
- Special wavelet-based spacial decomposition.
- 200K leaf boxes max on 1024 T3E, 1280 SP3 (375 MHz)
- T3E 170 secs/step; IBM SP3 110 secs/step (MD step)
- grain size 20K, presents fixed size scalability results },
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{nasri91a,
author = {Ahmad H. Nasri},
title = {Surface Interpolation on Irregular Networks with Normal Conditions},
journal = CAGD,
year = {1991},
volume = {8},
pages = {89--96},
annote = {Now also with normal conditions, although Nasri implicitly assumes
that the faces corresponding to the original vertices after the first
subdivision are planar when he writes that the limit normal is simply
the normal to the face... Well, he does do the quadratic scheme of
Doo-Sabin and also manages to claim that it results in a globally
$C^1$ surface. Ahem.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{nasri91b,
author = {Ahmad H. Nasri},
title = {Boundary Corner Control in Recursive Subdivision Surfaces},
journal = CAD,
year = {1991},
volume = {23},
pages = {405--410},
number = {6},
annote = {Improvement on earlier paper by removing various constraints on the
shape and topology of the boundary.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{nasri87,
author = {Ahmad H. Nasri},
title = {Polyhedral Subdivision Methods for Free-Form Surfaces},
journal = TOG,
year = {1987},
volume = {6},
pages = {29--73},
number = {1},
month = {January},
annote = {Considers quadratic scheme of Doo-Sabin and modifies it to account
for boundary curves where he uses Chaikin's algorithm. Also sets
up linear system.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Navau:2000:MSF,
author = {Navau, J. Cotrina and Garcia, N. Pla},
title = {Modeling surfaces from meshes of arbitrary topology},
journal = {Comput. Aided Geom. Design},
year = {2000},
volume = {17},
pages = {643--671},
number = {7},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{NavauG00,
author = {J. C. Navau and N. P. Garcia},
title = {Modeling surfaces from meshes of arbitrary topology.},
journal = {Computer Aided Geometric Design},
year = {2000},
volume = {17},
pages = {643-671},
number = {7},
bibsource = {DBLP, http://dblp.uni-trier.de},
ee = {http://dx.doi.org/10.1016/S0167-8396(00)00020-0},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{NavauGA02,
author = {J. C. Navau and N. P. Garcia and M. V. Anglada},
title = {A Generic Approach to Free Form Surface Generation.},
journal = {J. Comput. Inf. Sci. Eng.},
year = {2002},
volume = {2},
pages = {294-301},
number = {4},
bibsource = {DBLP, http://dblp.uni-trier.de},
ee = {http://ojps.aip.org/getabs/servlet/GetabsServlet?prog=normal{\&}id=JCISB6000002000004000294000001{\&}idtype=cvips{\&}gifs=Yes},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Nay:1972:AFE,
author = {Nay, R. A. and Utku, S.},
title = {An alternative to the finite element method},
journal = {Variational Methods Engineering},
year = {1972},
volume = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{FiberMesh:2007,
author = {Andrew Nealen and Takeo Igarashi and Olga Sorkine and Marc Alexa},
title = {{FiberMesh}: Designing Freeform Surfaces with 3{D} Curves},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {article no. 41},
number = {3}
}
@INPROCEEDINGS{LapMeshOptimization:2006,
author = {Andrew Nealen and Takeo Igarashi and Olga Sorkine and Marc Alexa},
title = {Laplacian mesh optimization},
booktitle = {Proceedings of ACM GRAPHITE},
year = {2006},
pages = {381--389}
}
@INPROCEEDINGS{nealen06lmo,
author = {Andrew Nealen and Takeo Igarashi and Olga Sorkine and Marc Alexa},
title = {Laplacian Mesh Optimization},
booktitle = {ACM GRAPHITE},
year = {2006},
pages = {381-389},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{NealenSTAR05,
author = {Andrew Nealen and Matthias M{\"u}ller and Richard Keiser and Eddy
Boxerman and Mark Carlson},
title = {State-of-the-art report: Physically Based Deformable Models in Computer
Graphics},
journal = j-CGF,
year = {2006},
volume = {25},
number = {4},
note = {Presented at Eurographics 2005 as state-of-the-art report.},
owner = {sorkine},
timestamp = {2006.09.29}
}
@TECHREPORT{FiberMeshTechRep:2007,
author = {Andrew Nealen and Olga Sorkine},
title = {A Note on Boundary Constraints for Linear Variational Surface Design},
institution = {Technische Universit{\"a}t Berlin},
year = {2007}
}
@ARTICLE{Nealen05,
author = {Andrew Nealen and Olga Sorkine and Marc Alexa and Daniel Cohen-Or},
title = {A Sketch-Based Interface for Detail-Preserving Mesh Editing},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {1142--1147},
number = {3},
bdsk-url-1 = {http://doi.acm.org/10.1145/1073204.1073324},
}
@INPROCEEDINGS{Neff:1999:AVM,
author = {Michael Neff and Eugene L. Fiume },
title = {A Visual Model For Blast Waves and Fracture},
booktitle = {Graphics Interface '99},
year = {1999},
pages = {193--202},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Neumaier98,
author = {Neumaier, A.},
title = {Solving ill-conditioned and singular linear systems: a tutorial on
regularization},
journal = {SIAM Rev.},
year = {1998},
volume = {40},
pages = {636--666 (electronic)},
number = {3},
fjournal = {SIAM Review},
issn = {0036-1445},
mrclass = {65F30},
mrnumber = {MR1642811 (99f:65066)},
mrreviewer = {Andreas Rieder},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Newmark:1959:AMC,
author = {N. M. Newmark},
title = {A Method of Computation for Structural Dynamics},
journal = {ASCE J. of the Engineering Mechanics Division},
year = {1959},
volume = {85},
pages = {67--94},
number = {EM 3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ng:1996:CGT,
author = {Hing N. Ng and Richard L. Grimsdale},
title = {Computer Graphics Techniques for Modeling Cloth},
journal = {IEEE Computer Graphics {\&} Applications},
year = {1996},
volume = {16},
pages = {28--41},
number = {5},
month = sep,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ni04,
author = {Xinlai Ni and Michael Garland and John C. Hart},
title = {Fair morse functions for extracting the topological structure of
a surface mesh},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {613--622},
number = {3},
}
@ARTICLE{nipv:84,
author = {W. Niethammer and J. de Pillis and R. S. Varga},
title = {Convergence of Block Iterative Methods Applied to Sparse Least-squares
Problems},
journal = {Linear Algebra Appl.},
year = {1984},
volume = {58},
pages = {327--341},
kwds = {iter,precond},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Norton:1991:AOF,
author = {Alan Norton and Greg Turk and Bob Bacon and John Gerth and Paula
Sweeney},
title = {Animation of fracture by physical modeling},
journal = {The Visual Computer},
year = {1991},
pages = {210--219},
number = {7},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{novotni:02:geodesic,
author = {M. Novotni and R. Klein},
title = {Computing Geodesic Distances on Triangular Meshes},
booktitle = {The 10th International Conference in Central Europe on Computer Graphics,
Visualization and Computer Vision (WSCG'2002)},
year = {2002},
pages = {341--347},
month = {February},
institution = {Universit\"{a}t Bonn}
}
@ARTICLE{OBrien:2002:GMA,
author = {James F. O'Brien and Adam W. Bargteil and Jessica K. Hodgins},
title = {Graphical Modeling and Animation of Ductile Fracture},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {291--294},
number = {3},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{OBrien:1999:GMA,
author = {James F. O'Brien and Jessica K. Hodgins},
title = {Graphical Modeling and Animation of Brittle Fracture},
booktitle = {Proceedings of SIGGRAPH 99},
year = {1999},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {137--146},
month = aug,
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Onate:1996:NLE,
author = {O\~{n}ate, E. and Cendoya, P. and Rojek, J. and Miquel, J.},
title = {Non linear explicit dynamic analysis of shell structures using a
simple triangle with translational degrees of freedom only},
year = {1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Onate:1996:STS,
author = {O\~{n}ate, E. and Cendoya, P. and Rojek, J. and Miquel, J.},
title = {A simple thin shell triangle with translational degrees of freedom
for sheet stamping analysis},
year = {1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Onate:1993:DTP,
author = {O\~{n}ate, E. and Cervera, M.},
title = {Derivation of thin plate bending elements with one degree of freedom
per node},
journal = {Engineering Computations},
year = {1993},
volume = {10},
pages = {543},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Onate:1994:FVF,
author = {O\~{n}ate, E. and Cervera, M. and Zienkiewicz, O. C.},
title = {A finite volume format for structural mechanics},
journal = {International Journal for Numerical Methods in Engineering},
year = {1994},
volume = {37},
pages = {181},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Onate:1999:RDF,
title = {Recent development in finite element analysis},
publisher = {CIMNE},
year = {1999},
author = {O\~{n}ate, E. and Hughes, T. J. R. and Zienkiewicz, O. C.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Onate:1996:FPM,
author = {O\~{n}ate, E. and Idelsohn, S. and Zienkiewicz, O. C. and Taylor,
L.},
title = {A finite point method in computational mechanics. Applications to
convective transport and fluid flow},
journal = {International Journal for Numerical Methods in Engineering},
year = {1996},
volume = {39},
pages = {3839},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Onate:1994:STE,
author = {O\~{n}ate, E. and Z\'arate, F. and Flores, F.},
title = {A simple triangular element for thick and thin plate and shell analysis},
journal = {International Journal for Numerical Methods in Engineering},
year = {1994},
volume = {37},
pages = {2569},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Onate:1992:MDS,
author = {O\~{n}ate, E. and Zienkiewicz, O. C. and Suarez, B. and Taylor, R.
L.},
title = {A methodology for deriving shear constrained Reissner-Mindlin plate
elements},
journal = {International Journal for Numerical Methods in Engineering},
year = {1992},
volume = {33},
pages = {345},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Onate:2000:RFT,
author = {O\~{n}ate, Eugenio and Zrate, Francisco},
title = {Rotation-free triangular plate and shell elements},
journal = {Internat. J. Numer. Methods Engrg.},
year = {2000},
volume = {47},
pages = {557--603},
number = {1-3},
note = {{\~n} {\'a} Richard H. Gallagher Memorial Issue 0029-5981},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Oberknapp:1997:ADC,
author = {Oberknapp, Bernd and Polthier, Konrad},
title = {An algorithm for discrete constant mean curvature surfaces},
journal = {Visualization and mathematics (Berlin-Dahlem, 1995)},
year = {1997},
pages = {141--161},
note = {Springer Berlin},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{OdenR76,
author = {Oden, J. T. and Reddy, J. N.},
title = {On Mixed Finite Element Approximations},
journal = {SIAM Journal on Numerical Analysis},
year = {1976},
volume = {13},
pages = {393--404},
number = {3},
abstract = {A theory of mixed finite element approximations of a class of linear
self-adjoint boundary value problems is developed which involves
splitting a problem of the type T* Tu = f into a pair of canonical
equations, Tu = v, T* ? = f. Consistency and stability of Galerkin/finite
element approximations of the pair is described, convergence criteria
are established, and error estimates are derived for a number of
important cases.},
copyright = {Copyright 1976 Society for Industrial and Applied Mathematics},
issn = {00361429},
owner = {sorkine},
publisher = {Society for Industrial and Applied Mathematics},
timestamp = {2008.10.27},
}
@INPROCEEDINGS{Oh:2004:NII,
author = {Oh, Seung-Woo and Ahn, Jung-Hyun and Wohn, Kwangyun},
title = { A New Implicit Integration Method for Low Damped Cloth Simulation},
booktitle = {GMCG 2004},
year = {2004},
pages = {115-121},
address = {Seoul, Korea},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ohbuchi:2002:AFA,
author = {R. Ohbuchi and A. Mukaiyama and S. Takahashi},
title = {A Frequency-Domain Approach to Watermarking 3{D} Shapes},
journal = j-CGF,
year = {2002},
volume = {21},
pages = {373--382},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Ohbuchi01,
author = {Ryutarou Ohbuchi and Shigeo Takahashi and Takahiko Miyazawa and Akio
Mukaiyama},
title = {Watermarking 3{D} Polygonal Meshes in the Mesh Spectral Domain},
booktitle = {Proceedings of Graphics Interface},
year = {2001},
pages = {9--17},
month = {June},
publisher = {Morgan Kaufmann Publishers},
location = {Ontario, Canada},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ohtake:2003:MPO,
author = {Yutaka Ohtake and Alexander Belyaev and Marc Alexa and Greg Turk
and Hans-Peter Seidel},
title = {Multi-Level Partition of Unity Implicits},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {463--470},
number = {3},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{OhtakeBelyaev04,
author = {Yutaka Ohtake and Alexander Belyaev and Hans-Peter Seidel},
title = {Ridge-Valley Lines on Meshes via Implicit Surface Fitting},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {609--612},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ortiz:1999,
author = {Ortiz, M. and Pandolfi, A.},
title = {A class of cohesive elements for the simulation of three-dimensional
crack propagation},
journal = ijnme,
year = {1999},
volume = {44},
pages = {1267--1282},
owner = {sorkine},
timestamp = {2008.10.27}
}
@article{orzan08,
author = {Alexandrina Orzan and Adrien Bousseau and Holger Winnem\"{o}ller
and Pascal Barla and Jo\"{e}lle Thollot and David Salesin},
title = {Diffusion curves: a vector representation for smooth-shaded images},
journal = j-TOG,
volume = {27},
number = {3},
year = {2008},
pages = {92:1--92:8},
}
@INPROCEEDINGS{ottusch-wandzura-99,
author = {John J. Ottusch and Mark A. Stalzer and John L. Visher and Stephen
M. Wandzura},
title = {Scalable Electromagnetic Scattering Calculations on the {SGI} {O}rigin
2000},
booktitle = {Proceedings of Supercomputing},
year = {1999},
series = {The SCxy Conference series},
address = {Portland, Oregon},
month = {November},
organization = {ACM/IEEE},
abstact = {
Hughes Electronics, Helmholtz FMM, Morton orodering, 2,160,000 unknowns,
27.9 hours
Fast Rokhlin translations },
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{PoissonImageEditing03,
author = {Patrick P\'{e}rez and Michel Gangnet and Andrew Blake},
title = {Poisson image editing},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {313--318},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{pasa:82,
author = {C. C. Paige and M. A. Saunders},
title = {{LSQR}. {An} Algorithm for Sparse Linear Equations and Sparse Least
Squares},
journal = {ACM Trans. Math. Software},
year = {1982},
volume = {8},
pages = {43--71},
kwds = {iter, cg, lanczos},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{pasa:82a,
author = {C. C. Paige and M. A. Saunders},
title = {Algorithm {\rm 583} {LSQR}: Sparse Linear Equations and Sparse Least
Squares},
journal = {ACM Trans. Math. Software},
year = {1982},
volume = {8},
pages = {195--209},
kwds = {iter, cg, lanczos, soft},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Pajarola:2000,
author = {R. Pajarola and J. Rossignac},
title = {Compressed Progressive Meshes},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2000},
volume = {6},
pages = {79--93},
number = {1},
month = jan # {\slash } # mar,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Papadopoulos:1988:TEB,
author = {Papadopoulos, P. and Taylor, R. L.},
title = {A triangular element based on Reissner-Mindlin plate theory},
journal = {International Journal for Numerical Methods in Engineering},
year = {1988},
volume = {30},
pages = {1029},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{parksWhite1982,
author = {Parks, D.M. and White C.S.},
title = {Elastic-Plastic Line-Spring Finite Elements for Surface-Cracked Plates
and Shells},
journal = jpvs,
year = {1982},
volume = {104},
pages = {287--292},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Parks:2002:IIC,
author = {Parks, D. and Forsyth, D.},
title = {Improved Integration for Cloth Simulation},
year = {2002},
note = {Eurographics short presentation},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Pasko:1995:FRI,
author = {A. Pasko and V. Adzhiev and A. Sourin and V. Savchenko},
title = {Function representation in geometric modeling: concepts, implementation
and applications},
journal = {The Visual Computer},
year = {1995},
volume = {11},
pages = {429--446},
number = {8},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Pauly:2002:ESP,
author = {Pauly, M. and Gross, M. and Kobbelt, L. P.},
title = {Efficient simplification of point-sampled surfaces},
journal = {VIS2002. IEEE Visualization 2002. Proceedings (Cat. No.02CH37370)},
year = {2002},
pages = {163-170},
abstract = {We introduce, analyze and quantitatively compare a number of surface
simplification methods for point-sampled geometry. We have implemented
incremental and hierarchical clustering, iterative simplification,
and particle simulation algorithms to create approximations of point-based
models with lower sampling density. All these methods work directly
on the point cloud, requiring no intermediate tesselation. We show
how local variation estimation and quadric error metrics can be employed
to diminish the approximation error and concentrate more samples
in regions of high curvature. To compare the quality of the simplified
surfaces, we have designed a new method for computing numerical and
visual error estimates for point-sampled surfaces. Our algorithms
are fast, easy to implement, and create high-quality surface approximations,
clearly demonstrating the effectiveness of point-based surface simplification.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Pauly:2003:SMP,
author = {Mark Pauly and Richard Keiser and Leif P. Kobbelt and Markus Gross},
title = {Shape modeling with point-sampled geometry},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {641--650},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Pedersen:1995:DIS,
author = {Hans K{\o}hling Pedersen},
title = {Decorating Implicit Surfaces},
journal = {Proceedings of SIGGRAPH 95},
year = {August 1995},
pages = {291--300},
note = {ISBN 0-201-84776-0. Held in Los Angeles, California.},
annote = {This work presents a new general approach for applying textures onto
implicit surfaces. Its main contributions are: - An improved set
of interactive tools for subdividing implicit surfaces into convenient
patches. - An efficient and reliable algorithm for deriving parameterizations
for these patches. - A new set of useful texturing operations. These
results provide a unified representation scheme for a variety of
texturing techniques that were previously incompatible, allowing
more efficient manipulation, storage, and rendering of textured objects
and a fuller use of current texture mapping hardware. },
editor = {Robert Cook},
owner = {sorkine},
publisher = {Addison Wesley},
series = {Computer Graphics Proceedings, Annual Conference Series},
timestamp = {2008.10.27}
}
@ARTICLE{Pedersen:1996:AFF,
author = {Hans K{\o}hling Pedersen},
title = {A Framework for Interactive Texturing Operations on Curved Surfaces},
journal = {Proceedings of SIGGRAPH 96},
year = {August 1996},
pages = {295--302},
note = {ISBN 0-201-94800-1. Held in New Orleans, Louisiana.},
annote = {Existing techniques for texturing curved surfaces are either only
applicable for a limited subset of surface representations (3d painting
of parametric patches or dense polygonal meshes for example), or
do not lend themselves naturally to interactive texture editing (e.g.
procedural and solid textures). Although such methods have been used
to produce stunning effects, there is a lack of flexible and general
purpose tools, such as those provided by 2d image processing applications.
This work argues that interactive texturing could benefit from a
more cohesive paradigm built around a kernel of powerful and general
operations. Using an analogy to the evolution of 2d painting algorithms,
the paper motivates a framework for interactive texturing operations
on curved surfaces and describes an approach for translating, rotating,
and warping regions of texture (patchinos) on a surface. These ideas
have been implemented for parametric and implicit surfaces. As an
interesting side effect, this more unified framework also opens the
door to a number of new interactive 3d texturing techniques that
have no natural counterparts in two dimensions. },
editor = {Holly Rushmeier},
owner = {sorkine},
publisher = {Addison Wesley},
series = {Computer Graphics Proceedings, Annual Conference Series},
timestamp = {2008.10.27}
}
@ARTICLE{PekelnyG08,
author = {Yuri Pekelny and Craig Gotsman},
title = {Articulated Object Reconstruction and Markerless Motion Capture from
Depth Video},
journal = {Comput. Graph. Forum},
year = {2008},
volume = {27},
pages = {399-408},
number = {2},
citedby = {0},
cites = {0},
researchr = {http://researchr.org/publication/PekelnyG08}
}
@ARTICLE{Peng2004,
author = {Jianbo Peng and Daniel Kristjansson and Denis Zorin},
title = {Interactive modeling of topologically complex geometric detail},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {635--643},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
}
@INPROCEEDINGS{Peng:2001:SAS,
author = {Jianbo Peng and Vasily Strela and Denis Zorin},
title = {A Simple Algorithm for Surface Denoising},
booktitle = {Visualization 2001},
year = {2001}
}
@INPROCEEDINGS{perry01kizamu,
author = {Ronald N. Perry and Sarah F. Frisken},
title = {Kizamu: a system for sculpting digital characters},
booktitle = {ACM SIGGRAPH},
year = {2001},
pages = {47--56},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Peters:2002:CFF,
author = {Peters, J.},
title = {{$C^2$} free-form surfaces of degree {$(3,5)$}},
journal = {Comput. Aided Geom. Design},
year = {2002},
volume = {19},
pages = {113--126},
number = {2},
coden = {CAGDEX},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
mrclass = {65D17 (65D18 68U07)},
mrnumber = {MR1892171 (2003h:65018)},
mrreviewer = {Marshall Walker},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Peters:2002:CFS,
author = {J. Peters},
title = {$C^2$ free-form surfaces of degree (3,5)},
journal = {Computer Aided Geometric Design},
year = {2002},
volume = {19},
pages = {113--126},
number = {2},
month = {February},
note = {ISSN 0167-8396},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{peters97sss,
author = {J. Peters and U. Reif},
title = {The simplest subdivision scheme for smoothing polyhedra},
journal = TOG,
year = {1997},
volume = {16(4)},
month = {October},
owner = {sorkine},
page = {420--431},
timestamp = {2008.10.27}
}
@ARTICLE{Peters:1996:CCS,
author = {Peters, J{\"o}rg},
title = {Curvature continuous spline surfaces over irregular meshes},
journal = {Comput. Aided Geom. Design},
year = {1996},
volume = {13},
pages = {101--131},
number = {2},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{peters95a,
author = {J{\"o}rg Peters},
title = {${C}^{1}$ Surface Splines},
journal = SINUM,
year = {1995},
volume = {32},
pages = {645--666},
number = {2},
annote = {Arbitrary topology, yields 3 and 4 sided patches which are quadratic
(and or cubic) and an improvement on earlier work by the same author.
Input mesh points can be interpolated.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{peters95c,
author = {J{\"o}rg Peters},
title = {Smoothing Polyhedra Made Easy},
journal = TOG,
year = {1995},
volume = {14},
pages = {161--169},
number = {2},
month = {April},
annote = {Topolgically restricted at most cubic (in the regular case quadratic).
Twice as many three sided patches as input edges},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{peters93a,
author = {J{\"o}rg Peters},
title = {Smooth Free-Form Surfaces over Irregular Meshes Generalization Quadratic
Splines},
journal = CAGD,
year = {1993},
volume = {10},
pages = {347--361},
annote = {Quadratic splines but after subdivision of the input mesh, but huge
numbers of them. Cubic around extraordinary places},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Peters:1992:JSP,
author = {Peters, J{\"o}rg},
title = {Joining smooth patches around a vertex to form a {$C^k$} surface},
journal = {Comput. Aided Geom. Design},
year = {1992},
volume = {9},
pages = {387--411},
number = {5},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{peters97,
author = {J{\"o}rg Peters and Ulrich Reif},
title = {Analysis of generalized {B}-spline subdivision algorithms},
journal = {SIAM Jornal of Numerical Analysis},
year = {1997},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Peters:2000:PCM,
author = {J{\"{o}}rg Peters},
title = {Patching {C}atmull-{C}lark Meshes},
booktitle = {Proceedings of ACM SIGGRAPH 2000},
year = {2000},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {255--258},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Phaal:1992:SCFa,
author = {Phaal, R. and Calladine, C. R.},
title = {A simple class of finite elements for plate and shell problems. I:
Elements for beams and thin plates},
journal = {International Journal for Numerical Methods in Engineering},
year = {1992},
volume = {35},
pages = {955},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Phaal:1992:SCFb,
author = {Phaal, R. and Calladine, C. R.},
title = {A simple class of finite elements for plate and shell problems. II:
An element for thin shells with only translational degrees of freedom},
journal = {International Journal for Numerical Methods in Engineering},
year = {1992},
volume = {35},
pages = {979},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{phillips-zheng-02,
author = {James C. Phillips and Gengbin Zheng and Sameer Kumar and Laxmikant
V. Kal\'{e}},
title = {NAMD: Biomolecular Simulation on Thousands of Processors},
booktitle = {Proceedings of Supercomputing},
year = {2002},
series = {The SCxy Conference series},
address = {Baltimore, Maryland},
month = {November},
organization = {ACM/IEEE},
abstract = {
CHARM++/MPI/Converse. MOLECULAR DYNAMICS, PARTICLE MESH Ewald O(N
Log N) electrostatics with MPI/FFTW, load balancing. Full atomic
coordinates of protenins, RNA liptds and water + ions are obtained
by crystallography. Empirical energy function wtih LONG-RANGE
Lennard-Jones + electrostics is applied. Newton method with
Symplectic/reversible methods usng DT = 1fs. UP to 100K atoms.
(NO FMM). Look up table for Interpolation of 1/r^2 works well,
over 50\%. PEAK LEMIEUX PERFORMANCE IS 6 TERAFLOPS. Replaced MPI
directly with the ELAN libriy, local to lemieux. Discussion on
messages and further improvements. FIXED SIZE: 0.480 GFLOPS
1PE, spedup to 1024 670, to 2400, 1032. on 327K atoms. TOP 700 GFLOPS/sec
},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{pile:97,
author = {D. J. Pierce and J. G. Lewis},
title = {Sparse Multifrontal Rank Revealing {QR} Factorization},
journal = {SIAM J. Matrix Anal. Appl.},
year = {1997},
volume = {18},
pages = {159--181},
kwds = {sparse, qrd},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{pinchuk94,
author = {Pinchuk, Sergey},
title = {A counterexample to the strong real {J}acobian conjecture},
journal = {Mathematische Zeitschrift},
year = {1994},
volume = {217},
pages = {1--4},
number = {1},
coden = {MAZEAX},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Pinkall:1993:CDM,
author = {Pinkall, Ulrich and Polthier, Konrad},
title = {Computing discrete minimal surfaces and their conjugates},
journal = {Experiment. Math.},
year = {1993},
volume = {2},
pages = {15--36},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Piponi:2000:STM,
author = {Piponi, D. and Borshukov, G.},
title = {Seamless texture mapping of subdivision surfaces by model pelting
and texture blending},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {2000},
pages = {471--478},
abstract = {Subdivision surfaces solve numerous problems related to the geometry
of character and animation models. However, unlike on parametrised
surfaces there is no natural choice of texture coordinates on subdivision
surfaces. Existing algorithms for generating texture coordinates
on non-parametrised surfaces often find solutions that are locally
acceptable but globally are unsuitable for use by artists wishing
to paint textures. In addition, for topological reasons there is
not necessarily any choice of assignment of texture coordinates to
control points that can satisfactorily be interpolated over the entire
surface. We introduce a technique, pelting, for finding both optimal
and intuitive texture mapping over almost all of an entire subdivision
surface and then show how to combine multiple texture mappings together
to produce a seamless result.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{ZBrush,
author = {{Pixologic, Inc.}},
title = {{ZBrush 3.5R3}},
month = {July},
year = {2010},
note = {http://www.pixologic.com/zbrush/}
}
@ARTICLE{Poeschl:1984:DSI,
author = {Poeschl, T.},
title = {Detecting surface irregularities using isophotes},
journal = {Computer-Aided Geometric Design},
year = {1984},
volume = {1},
pages = {163-168},
number = {2},
abstract = {This contribution refers to the use of lines of equal light intensity,
called isophotes, for detecting irregularities of free form surfaces
in car body construction. The isophotes show irregularities of surface
smoothness, in Gaussian curvature and in the distribution of the
surface normals. The algorithm described was realised in the Ogsurf-P
CADCAM system a Volkswagen development for car body design and manufacturing.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Pogorelov:1967:GMN,
title = {Geometric methods in the nonlinear theory of elastic shells},
publisher = {``Nauka'', Moscow},
year = {1967},
author = {Pogorelov, A. V.},
pages = {280},
mrreviewer = {S. Drobot},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Popa06,
author = {Tiberiu Popa and Dan Julius and Alla Sheffer},
title = {Material-Aware Mesh Deformations},
booktitle = p-SMI,
year = {2006},
pages = {141--152},
}
@ARTICLE{poth:93,
author = {A. Pothen},
title = {Predicting the Structure of Sparse Orthogonal Factors},
journal = {Linear Algebra Appl.},
year = {1993},
volume = {194},
pages = {183--204},
kwds = {sparse, house},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{PothenSiLi1990,
author = {A. Pothen and H.~D. Simon and K.-P. Liou},
title = {Partitioning sparse matrices with eigenvectors of graphs},
journal = {SIAM Journal of Matrix Analysis},
year = {1990},
volume = {11},
pages = {430--452},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Praun:2000:LT,
author = {Praun, E. and Finkelstein, A. and Hoppe, H.},
title = {Lapped textures},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {2000},
pages = {465--470},
abstract = {We present a method for creating texture over an arbitrary surface
mesh using an example 2D texture. The approach is to identify interesting
regions (texture patches) in the 2D example, and to repeatedly paste
them onto the surface until it is completely covered. We call such
a collection of overlapping patches a lapped texture. It is rendered
using compositing operations, either into a traditional global texture
map during a preprocess, or directly with the surface at runtime.
The runtime compositing approach avoids resampling artifacts and
drastically reduces texture memory requirements. Through a simple
interface, the user specifies a tangential vector field over the
surface, providing local control over the texture scale, and for
anisotropic textures, the orientation. To paste a texture patch onto
the surface, a surface patch is grown and parametrized over texture
space. Specifically, we optimize the parametrization of each surface
patch such that the tangential vector field aligns everywhere with
the standard frame of the texture patch. We show that this optimization
is solved efficiently as a sparse linear system.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Praun:2003:SPR,
author = {Praun, E. and Hoppe, H.},
title = {Spherical parametrization and remeshing},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {340--349},
number = {3},
abstract = {The traditional approach for parametrizing a surface involves cutting
it into charts and mapping these piecewise onto a planar domain.
We introduce a robust technique for directly parametrizing a genus-zero
surface onto a spherical domain. A key ingredient for making such
a parametrization practical is the minimization of a stretch-based
measure, to reduce scale-distortion and thereby prevent undersampling.
Our second contribution is a scheme for sampling the spherical domain
using uniformly subdivided polyhedral domains, namely the tetrahedron,
octahedron, and cube. We show that these particular semiregular samplings
can be conveniently represented as completely regular 2D grids, i.e.
geometry images. Moreover, these images have simple boundary extension
rules that aid many processing operations. Applications include geometry
remeshing, level-of-detail, and morphing, compression, and smooth
surface subdivision.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{RobustMeshWatermarking99,
author = {Emil Praun and Hugues Hoppe and Adam Finkelstein},
title = {Robust mesh watermarking},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1999},
pages = {49--56},
}
@INPROCEEDINGS{Praun:2001:CMP,
author = {Praun, E. and Sweldens, W. and Schr{\"o}der, P.},
title = {Consistent mesh parameterizations},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {2001},
pages = {179--184},
abstract = {A basic element of digital geometry processing algorithms is the establishment
of a smooth parameterization for a given model. We propose an algorithm
which establishes parameterizations for a set of models. The parameterizations
are called consistent because they share the same base domain and
respect features. They give immediate correspondences between models
and allow remeshes with the same connectivity. Such remeshes form
the basis for a large class of algorithms, including principal component
analysis, wavelet transforms, detail and texture transfer between
models, and n-way shape blending. We demonstrate the versatility
of our algorithm with a number of examples.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Prautzsch:1997:FS,
author = {Prautzsch, Hartmut},
title = {Freeform splines},
journal = {Comput. Aided Geom. Design},
year = {1997},
volume = {14},
pages = {201--206},
number = {3},
fjournal = {Computer Aided Geometric Design},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{prautzsch95,
author = {H. Prautzsch},
title = {Analysis of {$C^k$}-subdivision surfaces at extraordianry points},
note = {Preprint. Presented at Oberwolfach, June, 1995},
year = {1995},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{prau:2002:BBT,
title = {{B{\'e}zier and B-Spline Techniques}},
publisher = {Springer},
year = {2002},
author = {H. Prautzsch and W. Boehm and M. Paluszny}
}
@UNPUBLISHED{prautzsch96,
author = {H. Prautzsch and U. Reif},
title = {Necessary Conditions for Subdivision Surfaces},
year = {1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{umlauf,
author = {H. Prautzsch and G. Umlauf},
title = {A ${G}^2$-subdivision algorithm},
booktitle = {Geometric Modelling, Computing Suppl. 13},
publisher = {Springer-Verlag},
year = {1998},
editor = {G. Farin and H. Bieri and G. Brunnet and T. DeRose},
pages = {217-224},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Prautzsch:2000:TGS,
author = {H. Prautzsch and G. Umlauf},
title = {Triangular ${G}^2$ splines},
booktitle = {Curve and Surface Design},
year = {2000},
editor = {L.L. Schumaker and P.J. Laurent and A. LeM\'{e}haut\'{e}},
pages = {335-342},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{umlauf2,
author = {H. Prautzsch and G. Umlauf},
title = {${G}^2$ subdivision algorithm},
howpublished = {Presented at SIAM Geometric Modeling '99.},
year = {1999},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{Prautzsch:1996:GSA,
author = {Prautzsch, H. and Umlauf, G.},
title = {A {$G^2$}-subdivision algorithm},
booktitle = {Geometric modelling (Dagstuhl, 1996)},
publisher = {Springer},
year = {1998},
volume = {13},
series = {Comput. Suppl.},
pages = {217--224},
address = {Vienna},
mrclass = {65D17 (65N30)},
mrnumber = {1 703 003},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{prautzsch97,
author = {H. Prautzsch and G. Umlauf},
title = {${G}^2$-continuous subdivision algorithm},
note = {Preprint},
year = {1997},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{NumericalRecipesC,
title = {Numerical Recipes in {C}: The Art of Scientific Computing},
publisher = {Cambridge University Press},
year = {1992},
author = {William H. Press and Saul A. Teukolsky and William T. Vetterling
and Brian P. Flannery},
owner = {sorkine},
timestamp = {2007.04.23}
}
@BOOK{press92recipes,
title = {Numerical Recipes in {C}: The Art of Scientific Computing},
publisher = {Cambridge University Press},
year = {1992},
author = {William H. Press and Saul A. Teukolsky and William T. Vetterling
and Brian P. Flannery},
edition = {Second},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{715212,
author = {Tobias Preuer and Martin Rumpf},
title = {An Adaptive Finite Element Method for Large Scale Image Processing},
booktitle = {SCALE-SPACE '99: Proceedings of the Second International Conference
on Scale-Space Theories in Computer Vision},
year = {1999},
pages = {223-234},
address = {London, UK},
publisher = {Springer-Verlag},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Provot:1997:CAS,
author = {X. Provot},
title = {Collision and Self-collision Handling in Cloth Model Dedicated to
Design},
booktitle = {Computer Animation and Simulation '97},
year = {1997},
pages = {177--190},
month = sep,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Provot:1995:DCI,
author = {Xavier Provot},
title = {Deformation Constraints in a Mass-Spring Model to Describe Rigid
Cloth Behavior},
booktitle = {Graphics Interface '95},
year = {1995},
pages = {147--154},
month = may,
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{Pulli97,
author = {K. Pulli and M. Lounsbery},
title = {Hierarchical Editing and Rendering of Subdivision Surfaces},
institution = {Dept. of CS\&E, University of Washington},
year = {1997},
number = {UW-CSE-97-04-07},
address = {Seattle, WA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Putz:2002:PUE,
author = {Putz, B.},
title = {The principles of using the equigradient and reflection lines as
the tools of surface continuity diagnosis},
journal = {Machine Graphics \& Vision},
year = {2002},
volume = {11},
pages = {21-36},
number = {1},
abstract = {The paper presents new theorems about characteristic curves on the
surface used as a shape smoothness diagnosis tool. First, general
principles of examination of characteristic curves, treated as contour
lines of a shape function, are presented. Two subsequent sections
deal with properties of two most popular characteristic curves: equigradient
lines and reflection lines. The theorems presented there are a theoretical
background for evaluation of the surface continuity via of examination
of these type of lines.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{qu91,
author = {Ruibin Qu},
title = {A Matrix Approach of the Convergence Analysis of Recursive Subdivision
Algorithms for Parametric Surfaces},
booktitle = {Curves and Surfaces in Computer Vision and Graphics II},
year = {1991},
volume = {1610},
pages = {165--175},
organization = {SPIE},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Radoux00,
author = {Radoux, C.},
title = {{Addition formulas for polynomials built on classical combinatorial
sequences}},
journal = {Journal of Computational and Applied Mathematics},
year = {2000},
volume = {115},
pages = {471--477},
number = {1-2},
owner = {sorkine},
publisher = {Elsevier},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Ranta:1993:CAP,
author = {Mervi Ranta and Masatomo Inui and Fumihiko Kimura and Martti M{\"{a}}ntyl{\"{a}}},
title = {Cut and paste based modeling with boundary features},
booktitle = {SMA '93: Proceedings of the Second Symposium on Solid Modeling and
Applications},
year = {1993},
pages = {303--312},
month = may
}
@INPROCEEDINGS{ray:pgp:05,
author = {Nicolas Ray and Wan Chiu Li and Bruno Levy and Alla Sheffer and Pierre
Alliez},
title = {Periodic Global Parameterization},
booktitle = j-TOG,
year = {2006},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Razzaque:1973:PTB,
author = {Razzaque, A.},
title = {A program for triangular bending elements with derivative smoothing},
journal = {International Journal for Numerical Methods in Engineering},
year = {1973},
volume = {6},
pages = {333},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ReddyO75,
author = {Reddy, J. N. and Oden, J. T.},
title = {Mixed finite-element approximations of linear boundary-value problems},
journal = {Quart. Appl. Math.},
year = {1975/76},
volume = {33},
pages = {255--280},
number = {3},
fjournal = {Quarterly of Applied Mathematics},
issn = {0033-569X},
mrclass = {65N30},
mrnumber = {MR0451782 (56 \#10064)},
mrreviewer = {P. G. Ciarlet},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INCOLLECTION{reif95c,
author = {Ulrich Reif},
title = {Some New Results on Subdivision Algorithms for Meshes of Arbitrary
Topology},
booktitle = {Approximation Theory VIII},
publisher = {World Scientific},
year = {1995},
editor = {C. K. Chui and Larry Schumaker},
volume = {2},
pages = {367--374},
address = {Singapore},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Reif:1998:TUR,
author = {Reif, U.},
title = {T{URBS}---topologically unrestricted rational {$B$}-splines},
journal = {Constr. Approx.},
year = {1998},
volume = {14},
pages = {57--77},
number = {1},
fjournal = {Constructive Approximation. An International Journal for Approximations
and Expansions},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{reif96,
author = {Ulrich Reif},
title = {A Degree Estimate for Polynomial Subdivision Surfaces of Higher Regularity},
journal = {Proc. Amer. Math. Soc.},
year = {1996},
volume = {124},
pages = {2167--2174},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{reif95a,
author = {Ulrich Reif},
title = {A Unified Approach to Subdivision Algorithms Near Extraordinary Points},
journal = j-CAGD,
year = {1995},
volume = {12},
pages = {153--174},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{reif95b,
author = {Ulrich Reif},
title = {A Degree Estimate for Polynomial Subdivision Surface of Higher Regularity},
institution = {Universit{\"a}t Stuttgart},
year = {1995},
address = {Mathematisches Institut A},
note = {preprint},
annote = {Lower bound on polynomial schemes to achieve certain smoothness,
which shows that Catmull-Clark cannot be tweaked to become $C^2$},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Rekimoto:2002:SIF,
author = {Rekimoto, J.},
title = {Smart{S}kin: an infrastructure for freehand manipulation on interactive
surfaces},
booktitle = {CHI '02: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {2002},
pages = {113--120},
address = {New York, NY, USA},
location = {Minneapolis, Minnesota, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Rhee:2006:RWP,
author = {Taehyun Rhee and J.P. Lewis and Ulrich Neumann},
title = {Real-Time Weighted Pose-Space Deformation on the GPU},
journal = {Computer Graphics Forum},
year = {2006},
volume = {25},
pages = {439--448},
number = {3},
month = sep
}
@ARTICLE{Richards:1986:LPF,
author = {T. H. Richards and G. C. Onwubolu},
title = {Linking plate/shell finite-element analysis and engineering drafting
by meshed surface modelling},
journal = {Computer-Aided Design},
year = {1986},
volume = {18},
pages = {327--336},
number = {6},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Ringel:2004:RRR,
author = {Ringel, M. and Ryall, K. and Shen, C. and Forlines, C. and Vernier,
F.},
title = {Release, relocate, reorient, resize: fluid techniques for document
sharing on multi-user interactive tables},
booktitle = {CHI '04: CHI '04 extended abstracts on Human factors in computing
systems},
year = {2004},
pages = {1441--1444},
address = {New York, NY, USA},
location = {Vienna, Austria},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{rivers2007ffl,
author = {Rivers, A.R. and James, D.L.},
title = {{FastLSM: fast lattice shape matching for robust real-time deformation}},
journal = j-TOG,
year = {2007},
volume = {26},
number = {3},
}
@ARTICLE{Rockwood:1989:TDM,
author = {Alyn P. Rockwood},
title = {The Displacement Method for Implicit Blending Surfaces in Solid Models},
journal = j-TOG,
year = {1989},
volume = {8},
pages = {279--297},
number = {4}
}
@ARTICLE{RomaniS04,
author = {L. Romani and M. A. Sabin},
title = {The conversion matrix between uniform B-spline and B\'{e}zier representations},
journal = {Comput. Aided Geom. Des.},
year = {2004},
volume = {21},
pages = {549--560},
number = {6},
issn = {0167-8396},
owner = {sorkine},
publisher = {Elsevier Science Publishers B. V.},
timestamp = {2008.10.27}
}
@ARTICLE{Rossignac:1999,
author = {Jarek Rossignac},
title = {Edgebreaker: Connectivity Compression for Triangle Meshes},
journal = {IEEE Transactions on Visualization and Computer Graphics },
year = {1999},
volume = {5},
pages = {47--61},
number = {1},
month = {January - March},
keywords = {Compression, 3D models, geometric representation, computer graphics,
solid modeling}
}
@ARTICLE{Rossl:2000:LARa,
author = {Rossl, C. and Kobbelt, L.},
title = {Line-art rendering of 3D-models},
journal = {Proceedings the Eighth Pacific Conference on Computer Graphics and
Applications},
year = {2000},
pages = {87-96},
abstract = {We present an interactive system for computer aided generation of
line art drawings to illustrate 3D models that are given as triangulated
surfaces. In a preprocessing step, an enhanced 2D view of the scene
is computed by sampling for every pixel the shading, the normal vectors
and the principal directions obtained from discrete curvature analysis.
Then streamlines are traced in the 2D direction fields and are used
to define line strokes. In order to reduce noise artifacts, the user
may interactively select sparse reference lines and the system will
automatically fill in additional strokes. By exploiting the special
structure of the streamlines, an intuitive and simple tone mapping
algorithm can be derived to generate the final rendering.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Rossl:2000:EFL,
author = {Rossl, C. and Kobbelt, L. and Seidel, H. P.},
title = {Extraction of feature lines on triangulated surfaces using morphological
operators},
journal = {Smart Graphics. Papers from the 2000 AAAI Symposium},
year = {2000},
pages = {71-75},
abstract = {Triangle meshes are a popular representation of surfaces in computer
graphics. Our aim is to detect features on such surfaces. Feature
regions distinguish themselves by high curvature. We use discrete
curvature analysis on triangle meshes to obtain curvature values
in every vertex of a mesh. These values are then thresholded resulting
in a so-called binary feature vector. By adapting morphological operators
to triangle meshes, noise and artifacts can be removed from the feature.
We introduce an operator that determines the skeleton of the feature
region. This skeleton can then be converted into a graph representing
the desired feature. Therefore a description of the surface's geometrical
characteristics is constructed.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Rossl:2000:LARb,
author = {Rossl, C. and Kobbelt, L. and Seidel, H. P.},
title = {Line art rendering of triangulated surfaces using discrete lines
of curvature},
journal = {8th International Conference in Central Europe on Computer Graphics,
Visualization and Interactive Digital Media'2000. Under the Auspices
of the Lord Mayor of the City of Pilsen in cooperation with EUROGRAPHOCS
and IFIP WG 5.10. WSCG'2000. Conference Proceedings},
year = {2000},
pages = {168-75 vol.1},
abstract = {In recent years, several techniques have been proposed for automatically
producing line-art illustrations. A new non-photo-realistic rendering
scheme for triangulated surfaces is presented. In contrast to prior
approaches with parametric surfaces, there is no global parameterization
for triangle meshes. So a new approach is made to automatically generate
a direction field for the strokes. Discrete curvature analysis on
such meshes allows us to estimate differential parameters. Lines
of curvature are then constructed to be used as strokes. Using triangulated
surfaces allows us to render aesthetically pleasing line drawings
from a huge class of models. Besides, experiments show that even
real time visualization is possible.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{RotkinTo2003,
author = {Vladimir Rotkin and Sivan Toledo},
title = {The design and implementation of a new out-of-core sparse {Cholesky}
factorization method},
journal = {ACM Trans. Math. Software},
year = {2004},
volume = {30},
pages = {19--46},
number = {1}
}
@INPROCEEDINGS{Rusinkiewicz:2004:ECT,
author = {Szymon Rusinkiewicz},
title = {Estimating Curvatures and Their Derivatives on Triangle Meshes},
booktitle = {Symposium on 3D Data Processing, Visualization, and Transmission},
year = {2004},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Rusu05,
author = {R. E. Rusu},
title = {An algorithm for the elastic flow of surfaces},
journal = {Interfaces and Free Boundaries},
year = {2005},
volume = {7},
pages = {229-239},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Saad96,
title = {Iterative Methods for Sparse Linear Systems},
publisher = {PWS Publishing Company},
year = {1996},
author = {Yousef Saad}
}
@PHDTHESIS{sabin76,
author = {M. Sabin},
title = {The use of Piecewiwe Forms for the Numerical Representation of Shape},
school = {Hungarian Academy of Sciences},
year = {1976},
address = {Budapest},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Saito:1990:CRO,
author = {Takafumi Saito and Tokiichiro Takahashi},
title = {Comprehensible Rendering of 3-{D} Shapes},
booktitle = {Computer Graphics (Proceedings of SIGGRAPH 90)},
year = {1990},
volume = {24},
number = {4},
pages = {197--206},
month = aug,
owner = {sorkine},
timestamp = {2008.10.28}
}
@BOOK{solomon-98,
title = {Data Compression, the complete reference},
publisher = {Springer},
year = {1998},
author = {David Salomon}
}
@INPROCEEDINGS{Sander:2001:TMP,
author = {Sander, P. V. and Snyder, J. and Gortler, S. J. and Hoppe, H.},
title = {Texture mapping progressive meshes},
booktitle = {Computer Graphics (SIGGRAPH Conference Proceedings)},
year = {2001},
pages = {409--416},
abstract = {Given an arbitrary mesh, we present a method to construct a progressive
mesh (PM) such that all meshes in the PM sequence share a common
texture parametrization. Our method considers two important goals
simultaneously. It minimizes texture stretch (small texture distances
mapped onto large surface distances) to balance sampling rates over
all locations and directions on the surface. It also minimizes texture
deviation ("slippage" error based on parametric correspondence) to
obtain accurate textured mesh approximations. The method begins by
partitioning the mesh into charts using planarity and compactness
heuristics. It creates a stretch-minimizing parametrization within
each chart, and resizes the charts based on the resulting stretch.
Next, it simplifies the mesh while respecting the chart boundaries.
The parametrization is re-optimized to reduce both stretch and deviation
over the whole PM sequence. Finally, the charts are packed into a
texture atlas. We demonstrate using such atlases to sample color
and normal maps over several models.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Sander:2003:MCG,
author = {Sander, P. V. and Wood, Z. J. and Gortler, S. J. and Hoppe, H.},
title = {Multi-chart geometry images},
booktitle = {SGP '03: Proceedings of the 2003 Eurographics/ACM SIGGRAPH symposium
on Geometry processing},
year = {2003},
pages = {146--155},
address = {Aire-la-Ville, Switzerland, Switzerland},
publisher = {Eurographics Association},
abstract = {We introduce multichart geometry images, a new representation for
arbitrary surfaces. It is created by resampling a surface onto a
regular 2D grid. Whereas the original scheme of Gu et al. maps the
entire surface onto a single square, we use an atlas construction
to map the surface piecewise onto charts of arbitrary shape. We demonstrate
that this added flexibility reduces parametrization distortion and
thus provides greater geometric fidelity, particularly for shapes
with long extremities, high genus, or disconnected components. Traditional
atlas constructions suffer from discontinuous reconstruction across
chart boundaries, which in our context create unacceptable surface
cracks. Our solution is a novel zippering algorithm that creates
a watertight surface. In addition, we present a new atlas chartification
scheme based on clustering optimization.},
location = {Aachen, Germany},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{saun:95,
author = {M. A. Saunders},
title = {Solution of Sparse Rectangular Systems Using {LSQR} and {CRAIG}},
journal = {BIT},
year = {1995},
volume = {35},
pages = {588--604},
kwds = {iter, cg, lanczos},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{saun:79,
author = {M. A. Saunders},
title = {Sparse Least Squares by Conjugate Gradients: {A} Comparison of Preconditioning
Methods},
booktitle = {Proceedings of Computer Science and Statistics: Twelfth Annual Conference
on the Interface},
year = {1979},
address = {Waterloo, Canada},
kwds = {iter, precond, cg},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{schaefer:06,
author = {Scott Schaefer and Travis McPhail and Joe Warren},
title = {Image deformation using moving least squares},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {533--540},
number = {3},
owner = {sorkine},
timestamp = {2007.04.23}
}
@INPROCEEDINGS{SchaeferWZ04,
author = {S. Schaefer and J. Warren and D. Zorin},
title = {Lofting curve networks using subdivision surfaces},
booktitle = {SGP '04: Proceedings of the 2004 Eurographics/ACM SIGGRAPH symposium
on Geometry processing},
year = {2004},
pages = {105--116},
address = {New York, NY, USA},
location = {Nice, France},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Schlomer:2011:FOP,
author = {Schl\"{o}mer, Thomas and Heck, Daniel and Deussen, Oliver},
title = {Farthest-point optimized point sets with maximized minimum distance},
booktitle = {Proc.\ of the ACM SIGGRAPH Symp. on High Performance Graphics},
year = {2011},
pages = {135--142}
}
@ARTICLE{Schmidt06,
author = {Ryan Schmidt and Cindy Grimm and Brian Wyvill},
title = {Interactive decal compositing with discrete exponential maps},
journal = {ACM Trans.\ Graph.},
year = {2006},
volume = {25},
pages = {605--613},
number = {3}
}
@INPROCEEDINGS{Schmidt10,
author = {R. Schmidt and K. Singh},
title = {meshmixer: an interface for rapid mesh composition},
booktitle = {ACM SIGGRAPH Talks},
year = {2010}
}
@INPROCEEDINGS{schmidt05shapeshop,
author = {R. Schmidt and B. Wyvill and M.C. Sousa and J.A. Jorge},
title = {{S}hape{S}hop: Sketch-Based Solid Modeling with BlobTrees},
booktitle = {Eurographics Workshop on Sketch-Based Interfaces and Modeling},
year = {2005},
pages = {53--62},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{schneider01geomfairing,
author = {Robert Schneider and Leif Kobbelt},
title = {Geometric fairing of irregular meshes for free-form surface design.},
journal = {Computer Aided Geometric Design},
year = {2001},
volume = {18},
pages = {359-379},
number = {4},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Schneider:2001:MFB,
author = {Schneider, R. and Kobbelt, L.},
title = {Mesh fairing based on an intrinsic PDE approach},
journal = {Computer Aided Design},
year = {2001},
volume = {33},
pages = {767-777},
number = {11},
abstract = {The authors propose the creation of fair surfaces satisfying prescribed
G/sup 1/ boundary constraints, based on solving a partial differential
equation (PDE) that is intrinsic. The PDE is simple and leads to
surfaces that have no local mean curvature extrema in the interior.
It enables the reproduction of the important class of surfaces with
constant mean curvature, containing spheres, cylinders and minimal
surfaces. As an application, we present an algorithm that creates
fair meshes with a semi-regular structure. The construction scheme
is designed to produce meshes that are partitioned into regular domains.
Using this domain knowledge in advance, we can develop a fast iterative
algorithm that produces surfaces of high aesthetic quality.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Schneider:2000:GFM,
author = {Schneider, R. and Kobbelt, L.},
title = {Generating fair meshes with G/sup 1/ boundary conditions},
journal = {Proceedings Geometric Modeling and Processing 2000. Theory and Applications},
year = {2000},
pages = {251-261},
abstract = {We present a new algorithm to create fair discrete surfaces satisfying
prescribed G/sup 1/ boundary constraints. All surfaces are built
by discretizing a partial differential equation based on pure geometric
intrinsics. The construction scheme is designed to produce meshes
that are partitioned into regular domains. Using this knowledge in
advance we can develop a fast iterative algorithm resulting in surfaces
of high aesthetic quality that have no local mean curvature extrema
in the interior.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Schneider:2003:MFB,
author = {Schneider, Robert and Kobbelt, Leif and Seidel, Hans-Peter},
title = {Mesh fairing based on harmonic mean curvature surfaces},
journal = {Hierarchical and geometrical methods in scientific visualization},
year = {2003},
pages = {243--267},
note = {Math. Vis. Springer Berlin},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{SchneiderKS01,
author = {Robert Schneider and Leif Kobbelt and Hans-Peter Seidel},
title = {Improved bi-Laplacian mesh fairing},
year = {2001},
pages = {445--454},
address = {Nashville, TN, USA},
book = {Mathematical Methods for Curves and Surfaces: Oslo 2000},
owner = {sorkine},
publisher = {Vanderbilt University},
timestamp = {2008.10.27}
}
@ARTICLE{Scholz78,
author = {Scholz, R.},
title = {A mixed method for 4th order problems using linear finite elements},
journal = {RAIRO Anal. Num\'er.},
year = {1978},
volume = {12},
pages = {85--90, iii},
number = {1},
fjournal = {RAIRO Analyse Num\'erique},
issn = {0399-0516},
mrclass = {65N30},
mrnumber = {MR0483557 (58 \#3549)},
mrreviewer = {P. G. Ciarlet},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Schreiner:2004:ISM,
author = {Schreiner, J. and Asirvatham, A. and Praun, E. and Hoppe, H.},
title = {Inter-surface mapping},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {870--877},
number = {3},
abstract = {We consider the problem of creating a map between two arbitrary triangle
meshes. Whereas previous approaches compose parametrizations over
a simpler intermediate domain, we directly create and optimize a
continuous map between the meshes. Map distortion is measured with
a new symmetric metric, and is minimized during interleaved coarse-to-fine
refinement of both meshes. By explicitly favoring low inter-surface
distortion, we obtain maps that naturally align corresponding shape
elements. Typically, the user need only specify a handful of feature
correspondences for initial registration, and even these constraints
can be removed during optimization. Our method robustly satisfies
hard constraints if desired. Inter-surface mapping is shown using
geometric and attribute morphs. Our general framework can also be
applied to parametrize surfaces onto simplicial domains, such as
coarse meshes (for semiregular remeshing), and octahedron and toroidal
domains (for geometry image remeshing). In these settings, we obtain
better parametrizations than with previous specialized techniques,
thanks to our fine-grain optimization.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Schroeder92,
author = {William J. Schroeder and Jonathan A. Zarge and William E. Lorensen},
title = {Decimation of triangle meshes},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1992},
pages = {65--70},
keywords = {geometric modeling, medical imaging, terrain modeling, volume modeling},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{sch-swe:sphere,
author = {Peter Schr{\"o}der and Wim Sweldens},
title = {Spherical Wavelets: {E}fficiently Representing Functions on the Sphere},
booktitle = {Computer Graphics Proceedings},
year = {1995},
series = {Annual Conference Series},
pages = {161--172},
optmonth = {August},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{subdiv:2000:sg_course,
author = {Peter Schr{\"o}der and Denis Zorin},
title = {Subdivision for Modeling and Animation},
booktitle = {SIGGRAPH 2000 Course Notes},
year = {2000},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{schweitzer96,
author = {J. E. Schweitzer},
title = {Analysis and Application of Subdivision Surfaces},
school = {University of Washington},
year = {1996},
address = {Seattle},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Scordelis:1969:CAC,
author = {Scordelis, A. C. and Lo, K. S.},
title = {Computer analysis of cylindrical shells},
journal = {Journal of American Concrete Institute},
year = {1969},
volume = {61},
pages = {539},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Sederberg93,
author = {Thomas W. Sederberg and Peisheng Gao and Guojin Wang and Hong Mu},
title = {2-{D} shape blending: an intrinsic solution to the vertex path problem},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1993},
pages = {15--18},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Sederberg:1986:FDO,
author = {Thomas W. Sederberg and Scott R. Parry},
title = {Free-Form Deformation of Solid Geometric Models},
booktitle = {Proc.\ SIGGRAPH},
year = {1986},
pages = {151--160},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Sederberg:2003:TAT,
author = {Thomas W. Sederberg and Jianmin Zheng and Almaz Bakenov and Ahmad
Nasri},
title = {T-{S}plines and {T-NURCCs}},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {477--484},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@TECHREPORT{seeger:lru,
author = {Seeger, M.},
title = {{Low rank updates for the Cholesky decomposition}},
institution = {Berkeley},
year = {2008}
}
@INCOLLECTION{Seidel:1994:PFA,
author = {H.-P. Seidel},
title = {Polar Forms and Triangular {B-Spline} Surfaces},
booktitle = {Euclidean Geometry and Computers, 2nd Edition},
publisher = {World Scientific Publishing Co.},
year = {1994},
editor = {D.-Z. Du and F. Hwang},
pages = {235--286},
owner = {sorkine},
timestamp = {2008.10.27},
}
@INPROCEEDINGS{sevilgen-aluru-02,
author = {Fatih E. Sevilgen and Srinivas Aluru},
title = {A Unifying Data Structure for Hierarchical Methods},
booktitle = {Proceedings of Supercomputing},
year = {1999},
series = {The SCxy Conference series},
address = {Portland, Oregon},
month = {November},
organization = {ACM/IEEE},
abstact = { },
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ContextBasedSurfaceCompletion:2004,
author = {Sharf, Andrei and Alexa, Marc and Cohen-Or, Daniel},
title = {Context-based surface completion},
journal = {ACM Trans.\ Graph.},
year = {2004},
volume = {23},
pages = {878--887},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
}
@ARTICLE{Sharf:2006:SnapPaste,
author = {Sharf, Andrei and Blumenkrants, Marina and Shamir, Ariel and Cohen-Or,
Daniel},
title = {{SnapPaste}: an interactive technique for easy mesh composition},
journal = {Vis.\ Comput.},
year = {2006},
volume = {22},
pages = {835--844},
number = {9},
issn = {0178-2789},
publisher = {Springer-Verlag New York, Inc.}
}
@ARTICLE{Sheffer:2003:SM,
author = {Sheffer, A.},
title = {Skinning 3{D} meshes},
journal = {Graphical Models},
year = {2003},
volume = {65},
pages = {274--285},
number = {5},
abstract = {A planar parameterization of 3D surfaces is useful for many applications.
The applicability of the parameterization depends on how well it
preserves the surface geometry (angles, distances, and areas). For
most surface meshes there is no parameterization which preserves
the geometry exactly. The distortion usually increases with the rise
in surface complexity. For highly complicated surfaces the distortion
can become so strong as to make the parameterization unusable for
application's purposes. A solution is to partition the surface or
introduce cuts in a way which reduce the distortion. We present a
new method for cutting seams in 3D mesh surfaces. The addition of
seams reduces the surface complexity and hence reduces the metric
distortion produced by the parameterization. Seams often introduce
additional constraints on the application for which the parameterization
is used, hence their length should be minimal. The presented method
minimizes the seam length while reducing the parameterization distortion
to acceptable level.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{PyramidCoords04,
author = {A. Sheffer and V. Kraevoy},
title = {Pyramid Coordinates for Morphing and Deformation},
booktitle = {Proceedings of the Second International Symposium on 3{DPVT} (3{D}
Data Processing, Visualization, and Transmission)},
year = {2004},
pages = {68--75},
publisher = {IEEE Computer Society Press},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Sheffer:2005:AFR,
author = {Sheffer, A. and L{\'e}vy, B. and Mogilnitsky, M. and Bogomyakov,
A.},
title = {{ABF}++: fast and robust angle based flattening},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {311--330},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Sheffer:2001:PFS,
author = {Sheffer, A. and de Sturler, A. S. E.},
title = {Parameterization of faceted surfaces for meshing using angle-based
flattening},
journal = {Engineering with Computers},
year = {2001},
volume = {17},
pages = {326--337},
number = {3},
abstract = {We propose a new method to compute planar triangulations of faceted
surfaces for surface parameterization. In contrast to previous approaches
that define the flattening problem as a mapping of the three-dimensional
node locations to the plane, our method defines the flattening problem
as a constrained optimization problem in terms of angles (only).
After applying a scaling that derives from the 'curvature' at a node,
we minimize the relative deformation of the angles in the plane with
respect to their counterparts in the three-dimensional surface. This
approach makes the method more stable and robust than previous approaches,
which used node locations in their formulations. The new method can
handle any manifold surface for which a connected, valid, two-dimensional
parameterization exists, including surfaces with large curvature
gradients. It does not require the boundary of the flat two-dimensional
domain to be predefined or convex. We use only the necessary and
sufficient constraints for a valid two-dimensional triangulation.
As a result, the existence of a theoretical solution to the minimization
procedure is guaranteed.},
dof = {http://dx.doi.org/10.1007/PL00013391},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Shen:2004:DET,
author = {Shen, C. and Vernier, F. D. and Forlines, C. and Ringel, M.},
title = {Diamond{S}pin: an extensible toolkit for around-the-table interaction},
booktitle = {CHI '04: Proceedings of the SIGCHI conference on Human factors in
computing systems},
year = {2004},
pages = {167--174},
address = {New York, NY, USA},
location = {Vienna, Austria},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Shen:1998:DOM,
author = {Jie Shen and Yee-Hong Yang},
title = {Deformable Object Modeling Using the Time-Dependent Finite Element
Method},
journal = {Graphical Models and Image Processing},
year = {1998},
volume = {60},
pages = {461--487},
number = {6},
month = nov,
owner = {sorkine},
timestamp = {2008.10.27}
}
@CONFERENCE{shepard1968two,
author = {Shepard, D.},
title = {{A two-dimensional interpolation function for irregularly-spaced
data}},
booktitle = {Proceedings of the 1968 23rd ACM national conference},
year = {1968},
pages = {517--524},
organization = {ACM}
}
@INCOLLECTION{shewchuk96b,
author = {Jonathan Richard Shewchuk},
title = {Triangle: Engineering a {2D} Quality Mesh Generator and Delaunay
Triangulator},
booktitle = {Applied Computational Geometry: Towards Geometric Engineering},
publisher = {Springer-Verlag},
year = {1996},
volume = {1148},
series = {Lecture Notes in Computer Science},
pages = {203--222}
}
@ARTICLE{Shi2006,
author = {Lin Shi and Yizhou Yu and Nathan Bell and Wei-Wen Feng},
title = {A Fast Multigrid Algorithm for Mesh Deformation},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {1108--1117},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Shi:2007:MPC,
author = {Xiaohan Shi and Kun Zhou and Yiying Tong and Mathieu Desbrun and
Hujun Bao and Baining Guo},
title = {Mesh Puppetry: cascading Optimization of Mesh Deformation with Inverse
Kinematics},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {81:1--81:10},
number = {3}
}
@ARTICLE{Shi:1987:FMT,
author = {Shi, Zhong Ci},
title = {The F-E-M test for convergence of nonconforming finite elements},
journal = {Math. Comp.},
year = {1987},
volume = {49},
pages = {391--405},
number = {180},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{shirmansequin88,
author = {L. Shirman and Carlo S{\'e}quin},
title = {Local Surface Interpolation with {B}{\'e}zier Patches},
journal = CAGD,
year = {1988},
volume = {4},
pages = {279--296},
number = {4},
annote = {Referenced in Halstead fairing paper and Peters $C^1$ paper. Requires
global system solve.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Shoemake1992,
author = {Ken Shoemake and Tom Duff},
title = {Matrix animation and polar decomposition},
booktitle = {Proceedings of Graphics Interface},
year = {1992},
pages = {258--264},
owner = {mbotsch},
timestamp = {2006.11.14}
}
@MISC{tetgen,
author = {Hang Si},
title = {\textsc{TetGen}: A 3{D} Delaunay Tetrahedral Mesh Generator},
year = {2003},
note = {\url{http://tetgen.berlios.de}},
url = {http://tetgen.berlios.de/}
}
@INBOOK{Sibson1981Wiley,
chapter = {A brief description of natural neighbor interpolation},
pages = {21--36},
title = {Interpolating multivariate data},
publisher = {John Wiley \& Sons},
year = {1981},
author = {Sibson, R.}
}
@ARTICLE{Simo:1989:OAS,
author = {Simo, J. C. and Fox, D. D.},
title = {On a stress resultant geometrically exact shell model. {I}. {F}ormulation
and optimal parametrization},
journal = {Comput. Methods Appl. Mech. Engrg.},
year = {1989},
volume = {72},
pages = {267--304},
number = {3},
fjournal = {Computer Methods in Applied Mechanics and Engineering},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Simo:1989:SRG,
author = {Simo, J. C. and Fox, D. D. and Rifai, M. S.},
title = {On a stress resultant geometrically exact shell model, Part II: The
linear theory: computational aspects},
journal = {Computer Methods in Applied Mechnics and Engineering},
year = {1989},
volume = {73},
pages = {553},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{singh-holt-93,
author = {Jaswinder Pal Singh and Chris Holt and John L. Hennessy and Anoop
Gupta},
title = {A Parallel Adaptive Fast Multipole Method},
booktitle = {Proceedings of Supercomputing},
year = {1993},
series = {The SCxy Conference series},
address = {Portland, Oregon},
month = {November},
organization = {ACM/IEEE},
abstract = {
Cost zones, 45fold speedup on 48-processor
VERY GOOD PAPER },
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Wires98,
author = {Karan Singh and Eugene Fiume},
title = {Wires: a geometric deformation technique},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1998},
pages = {405--414},
address = {New York, NY, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Singh:1998:WAG,
author = {Karan Singh and Eugene L. Fiume},
title = {Wires: A Geometric Deformation Technique},
booktitle = {ACM SIGGRAPH},
year = {1998},
pages = {405--414},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Sloan01,
author = {Peter-Pike J. Sloan and Charles F. Rose, III and Michael F. Cohen},
title = {Shape by example},
booktitle = {Proceedings of the 2001 Symposium on Interactive 3D graphics},
year = {2001},
pages = {135--143},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{slvo:90,
author = {A. van der Sluis and H. van der Vorst},
title = {{SIRT-} and {CG-}Type Methods for Iterative Solution of Sparse Linear
Least-Squares Problems},
journal = {Linear Algebra Appl.},
year = {1990},
volume = {130},
pages = {257--302},
kwds = {iter, cg},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{smith1996ddp,
title = {{Domain Decomposition: Parallel Multilevel Methods for Elliptic Partial
Differential Equations}},
publisher = {Cambridge University Press},
year = {1996},
author = {Smith, B.F. and Bj{\o}rstad, P.E. and Gropp, W.}
}
@BOOK{Snyder:1992,
title = {Generative Modeling for Computer Graphics and CAD},
publisher = {Academic Press},
year = {1992},
author = {J. M. Snyder},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Solomon:2011,
author = {Justin Solomon and Mirela Ben-Chen and Adrian Butscher and Leonidas
Guibas},
title = {As-Killing-As-Possible Vector Fields for Planar Deformation},
year = {2011},
booktitle = p-SGP,
}
@ARTICLE{LaplacianSTAR:2006,
author = {Olga Sorkine},
title = {Differential Representations for Mesh Processing},
journal = j-CGF,
year = {2006},
volume = {25},
pages = {789--807},
number = {4},
publisher = {Blackwell}
}
@PHDTHESIS{OlgaThesis,
author = {Olga Sorkine},
title = {Laplacian Mesh Processing},
school = {School of Computer Science, Tel Aviv University},
year = {2006},
owner = {sorkine},
timestamp = {2006.11.08}
}
@INPROCEEDINGS{ARAP_modeling:2007,
author = {Olga Sorkine and Marc Alexa},
title = {As-Rigid-As-Possible Surface Modeling},
booktitle = p-SGP,
year = {2007},
pages = {109--116},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{sorkine04lsm,
author = {Olga Sorkine and Daniel Cohen-Or},
title = {Least-squares Meshes},
booktitle = p-SMI,
year = {2004},
pages = {191--199},
}
@INPROCEEDINGS{OurShortEG01,
author = {Olga Sorkine and Daniel Cohen-Or},
title = {Warped Textures for {UV} Mapping Encoding},
booktitle = {Eurographics '01},
year = {2001},
note = {Presented as a short paper},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{WarpedTextures:2001,
author = {Olga Sorkine and Daniel Cohen-Or },
title = {Warped textures for uv-mapping encoding},
booktitle = {Proceedings of Eurographics, short papers volume},
year = {2001}
}
@INPROCEEDINGS{BDPMP02,
author = {Olga Sorkine and Daniel Cohen-Or and Rony Goldenthal and Dani Lischinski},
title = {Bounded-distortion piecewise mesh parameterization},
booktitle = {Proceedings of IEEE Visualization '02},
year = {2002},
pages = {355--362},
publisher = {IEEE Computer Society},
location = {Boston, Massachusetts},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{GeoAwareBases:2005,
author = {Olga Sorkine and Daniel Cohen-Or and Dror Irony and Sivan Toledo},
title = {Geometry-Aware Bases for Shape Approximation},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2005},
volume = {11},
pages = {171--180},
number = {2}
}
@INPROCEEDINGS{Highpass03,
author = {Olga Sorkine and Daniel Cohen-Or and Sivan Toledo},
title = {High-pass quantization for mesh encoding},
booktitle = p-SGP,
year = {2003},
pages = {42--51},
publisher = {Eurographics Association},
location = {Aachen, Germany},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{LaplacianMeshEditing:2004,
author = {Olga Sorkine and Yaron Lipman and Daniel Cohen-Or and Marc Alexa
and Christian R\"{o}ssl and Hans-Peter Seidel},
title = {Laplacian Surface Editing},
booktitle = p-SGP,
year = {2004},
pages = {179--188}
}
@ARTICLE{Sovakar:2004:ADA,
author = {Sovakar, A. and Kobbelt, L.},
title = {API Design for adaptive subdivision schemes},
journal = {Computers \& Graphics},
year = {2004},
volume = {28},
pages = {67-72},
number = {1},
abstract = {We present an API for adaptive subdivision schemes which is generic
in the sense that it allows to define a composite subdivision operator
as a sequence of atomic splitting and averaging rules, The API encapsulates
a mesh data structure enhanced by additional temporary information
which is necessary to enable the refinement of mesh faces in random
order while keeping the mesh structure consistent and avoiding redundant
computations.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{SpielmanTeng2003,
author = {Dan Spielman and Shang-Hua Teng},
title = {Solving Sparse, Symmetric, Diagonally-Dominant Linear Systems in
Time $O(m^{1.31})$},
booktitle = {FOCS '03: Proceedings of the 44th Annual IEEE Symposium on Foundations
of Computer Science},
year = {2003},
pages = {416--427},
address = {Washington, DC, USA},
month = oct,
publisher = {IEEE Computer Society},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Stam:2003:FOS,
author = {Jos Stam},
title = {Flows on surfaces of arbitrary topology},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {724--731},
number = {3},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Stam:1999:SF,
author = {Jos Stam},
title = {Stable Fluids},
booktitle = {Proceedings of {SIGGRAPH}},
year = {1999},
pages = {121--128},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Stam:1998:EEC,
author = {Jos Stam},
title = {Exact evaluation of Catmull-Clark subdivision surfaces at arbitrary
parameter values},
booktitle = {SIGGRAPH '98: Proceedings of the 25th annual conference on Computer
graphics and interactive techniques},
year = {1998},
pages = {395--404},
address = {New York, NY, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Stam:1998:EEO,
author = {Jos Stam},
title = {Exact Evaluation of {C}atmull-{C}lark Subdivision Surfaces at Arbitrary
Parameter Values},
booktitle = {Proceedings of SIGGRAPH 98},
year = {1998},
series = {Computer Graphics Proceedings, Annual Conference Series},
pages = {395--404},
address = {Orlando, Florida},
month = {July},
note = {ISBN 0-89791-999-8},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{SteinbrecherGerth2008,
author = {Steinbrecher, Tillmann and Gerth, Maik},
title = {Dental Inlay and Onlay Construction by Iterative Laplacian Surface
Editing},
booktitle = p-SGP,
year = {2008},
pages = {1441-1447},
owner = {sorkine},
timestamp = {2008.10.09}
}
@INCOLLECTION{Stevens,
author = {Kent A. Stevens},
title = {Inferring Shape from Contours Across Surfaces},
booktitle = {From Pixels to Predicates},
year = {1986},
editor = {Alex P. Pentland},
pages = {93--110},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{stoker,
title = {Differential Geometry},
publisher = {Wiley, New York},
year = {1989},
author = {J. J. Stoker},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Stolarski:1995:RSF,
author = {Stolarski, H. and Belytschko, T. and Lee, S. H.},
title = {A review of shell finite elements and corotational theories},
journal = {Computational Mechanics Advances},
year = {1995},
volume = {2},
pages = {125},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{strain-94,
author = {John Strain},
title = {Fast Spectrally-Accurate Solution of Variable-Coefficient Elliptic
Problems},
journal = {Proceedings of the American Mathematical Society},
year = {1994},
volume = {122},
pages = {843--850},
number = {3},
month = {Nov},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Strang:1973:AFE,
title = {An Analysis of the Finite Element Method},
publisher = {Prentice-Hall},
year = {1973},
author = {G. Strang and G.J. Fix},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Stummel:1979:GPT,
author = {Stummel, Friedrich},
title = {The generalized patch test},
journal = {SIAM J. Numer. Anal.},
year = {1979},
volume = {16},
pages = {449--471},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Subner:2004:IES,
author = {Subner, G. and Greiner, G. and Augustiniack, S.},
title = {Interactive examination of surface quality on car bodies},
journal = {Computer Aided Design},
year = {2004},
volume = {36},
pages = {425-436},
number = {5},
abstract = {The use of reflection lines and specular high lights for the quality
control of car body surfaces is an important issue in the development
process of a car. The interactive examination is based on standard
graphics tools such as the Scene Viewer of OpenInventor, which simulates
reflection lines by using striped environment maps. The interpolation
of texturing and shading values is critical and requires high quality
meshes. Thus, element shape and size are essential. We present a
new technique for the tessellation of trimmed surfaces. The result
of the algorithm is a 2-manifold mesh with a low triangle count and
a triangulation pattern, which is best, suited for the visualization.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Sumner:2004:DTF,
author = {R. Sumner and J. Popovi\'{c}},
title = {Deformation Transfer for Triangle Meshes},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {399--405},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Sumner07,
author = {Robert W. Sumner and Johannes Schmid and Mark Pauly},
title = {Embedded deformation for shape manipulation},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {80},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Sumner:2005:MIK,
author = {Robert W. Sumner and Matthias Zwicker and Craig Gotsman and Jovan
Popovi{\'{c}}},
title = {Mesh-based inverse kinematics},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {488--495},
number = {3}
}
@INPROCEEDINGS{sura03explicit,
author = {Vitaly Surazhsky and Craig Gotsman},
title = {Explicit surface remeshing},
booktitle = p-SGP,
year = {2003},
pages = {20--30},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{Swel95,
author = {W. Sweldens},
title = {The Lifting Scheme: A New Philosophy in Biorthogonal Wavelet Constructions},
booktitle = {Wavelet Applications in Signal and Image Processing III},
year = {1995},
editor = {A. F. Laine and M. Unser},
pages = {68-79},
publisher = {Proc.\ SPIE~2569},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{swe:lift2,
author = {Wim Sweldens},
title = {The Lifting Scheme: A Construction of Second Generation Wavelets},
institution = {Industrial Mathematics Initiative},
year = {1995},
number = {1995:06},
address = {Department of Mathematics, University of South Carolina},
note = {{\tt ftp://ftp.math.scarolina.edu\-/pub\-/imi\_95\-/imi95\_6.ps.gz}},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{szeliski92orientedparticles,
author = {Richard Szeliski and David Tonnesen},
title = {Surface modeling with oriented particle systems},
booktitle = {Proceedings of SIGGRAPH 1992},
year = {1992},
pages = {185--194},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Szeliski:1993:CCC,
author = {Szeliski, R. and Tonnesen, D. and Terzopoulos, D.},
title = {Curvature and continuity control in particle-based surface models},
journal = {Proceedings of the SPIE - The International Society for Optical Engineering},
year = {1993},
volume = {2031},
pages = {172-181},
abstract = {Such models are a generalization of traditional spline surfaces built
out of triangular patches. Traditional splines require the topology
of the triangular mesh to be specified ahead of time. In contrast,
particle-based surface models compute the topology dynamically as
a function of the relative node positions, and can add or delete
nodes as required. The authors develop techniques for both locally
controlling the curvature of the surface (through additional state
at each node), and for adapting the triangulation to surface curvature
(by concentrating more particles in areas of high curvature). The
same ideas can be applied to 3-D curves, which results in a flexible
version of traditional dynamic contours (snakes).},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Szeliski:1993:MSA,
author = {Szeliski, R. and Tonnesen, D. and Terzopoulos, D.},
title = {Modeling surfaces of arbitrary topology with dynamic particles},
journal = {Proceedings. 1993 IEEE Computer Society Conference on Computer Vision
and Pattern Recognition (Cat. No.93CH3309-2)},
year = {1993},
pages = {82-87},
abstract = {A new approach to surface modeling and reconstruction is developed
which overcomes some important limitations of existing surface representations
methods. The approach features two components. The first is a dynamic
self-organizing oriented particle system which discovers topological
and geometric surface structure implicit in visual data. The oriented
particles evolve according to Newtonian mechanics and interact through
long-range attraction forces, short-range repulsion forces, and coplanarity,
conormality, and cocircularity forces. The second component is an
efficient triangulation scheme that connects the particles into a
continuous global surface model that is consistent with the inferred
structure. A flexible surface reconstruction algorithm is developed
that can compute complete, detailed, viewpoint-invariant geometric
surface descriptions of objects with arbitrary topology. The algorithms
are applied to 3-D medical image segmentation and to surface reconstruction
from object silhouettes.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Tactex:2005:SFT,
author = {Tactex},
title = {Smart Fabric Technology},
year = {2005},
note = { http://www.tactex.com/},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Tan:1999:ACF,
author = {S. T. Tan and T. N. Wong and Y. F. Zhao and W. J. Chen},
title = {A constrained finite element method for modeling cloth deformation},
journal = {The Visual Computer},
year = {1999},
volume = {15},
pages = {90--99},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Tasdizen:2003:GSP,
author = {Tolga Tasdizen and Ross Whitaker and Paul Burchard and Stanley Osher},
title = {Geometric surface processing via normal maps},
journal = j-TOG,
year = {2003},
volume = {22},
pages = {1012--1033},
number = {4},
address = {New York, NY, USA},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Tasdizen2002,
author = {Tolga Tasdizen and Ross Whitaker and Paul Burchard and Stanley Osher},
title = {Geometric surface smoothing via anisotropic diffusion of normals},
booktitle = {VIS '02: Proceedings of the conference on Visualization '02},
year = {2002},
pages = {125--132},
address = {Washington, DC, USA},
publisher = {IEEE Computer Society},
location = {Boston, Massachusetts}
}
@TECHREPORT{Taubin:2001:LAM,
author = {Gabriel Taubin},
title = {Linear Anisotropic Mesh Filtering},
institution = {IBM T.J.Watson Research Center},
year = {2001},
number = {RC-22213 10/18/2001},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{TaubinSTAR2000,
author = {Gabriel Taubin},
title = {Geometric Signal Processing on Polygonal Meshes},
booktitle = {Proceedings of Eurographics (STAR volume)},
year = {2000},
note = {State of the Art Report},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Taubin:1995,
author = {Gabriel Taubin},
title = {A Signal Processing Approach to Fair Surface Design},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1995},
pages = {351--358},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{TaubinTensor95,
author = {G. Taubin},
title = {Estimating the tensor of curvature of a surface from a polyhedral
approximation},
booktitle = {ICCV},
year = {1995},
pages = {902--907},
publisher = {IEEE Computer Society},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Forest98,
author = {Gabriel Taubin and Andr{\'{e}} Gueziec and William Horn and Francis
Lazarus},
title = {Progressive Forest Split Compression},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1998},
pages = {123--132},
organization = {ACM SIGGRAPH},
publisher = {Addison Wesley},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Taubin98,
author = {Gabriel Taubin and Jarek Rossignac},
title = {Geometric Compression Through Topological Surgery},
journal = j-TOG,
year = {1998},
volume = {17},
pages = {84--115},
number = {2},
month = {April},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Taylor:1993:LIR,
author = {Taylor, R. L. and Auricchio, F.},
title = {Linked interpolation for Reissner-Mindlin plate elements. Part II:
A simple triangle},
journal = {International Journal for Numerical Methods in Engineering},
year = {1993},
volume = {36},
pages = {3057},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{teng-98,
author = {Shang-Hua Teng},
title = {Provably Good Partitioning and Load Balancing Algorithms for
Parallel Adaptive {N}-Body simulation},
journal = {SIAM Journal on Scientific Computing},
year = {1998},
volume = {19},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Terzopoulos:1988:DM,
author = {Terzopoulos, D. and Fleischer, K.},
title = {Deformable models},
journal = {Visual Computer},
year = {1988},
volume = {4},
pages = {306-331},
number = {6},
abstract = {The authors develop physically-based models of deformable curves,
surfaces, and solids for use in computer graphics. The deformable
models are governed by the mechanical laws of continuous bodies whose
shapes can change over time. These laws, expressed in the form of
dynamic differential equations, unify the description of shape and
motion. By solving the equations numerically they are able to create
realistic animations involving the interaction of deformable models
with various applied forces, ambient media, and impenetrable obstacles
in a simulated physical world. They develop deformable models capable
of perfectly elastic behavior and more general inelastic behavior,
including viscoelasticity, plasticity, and fracture.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Terzopoulos:1988:MID,
author = {Demetri Terzopoulos and Kurt Fleischer},
title = {Modeling Inelastic Deformation: Viscoelasticity, Plasticity, Fracture},
booktitle = {Computer Graphics (Proceedings of SIGGRAPH 88)},
year = {1988},
volume = {22},
pages = {269--278},
month = aug,
optnumber = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Terzopoulos1987,
author = {Demetri Terzopoulos and John Platt and Alan Barr and Kurt Fleischer},
title = {Elastically deformable models},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1987},
pages = {205--214},
owner = {mario},
timestamp = {2006.10.26}
}
@ARTICLE{Terzopoulos:1994:DNW,
author = {Demetri Terzopoulos and Hong Qin},
title = {Dynamic NURBS with Geometric Constraints for Interactive Sculpting},
journal = j-TOG,
year = {1994},
volume = {13},
pages = {103--136},
number = {2},
month = apr,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Theisel:2001:IRL,
author = {Theisel, H.},
title = {Are isophotes and reflection lines the same?},
journal = {Computer-Aided Geometric Design},
year = {2001},
volume = {18},
pages = {711-722},
number = {7},
abstract = {Isophotes and reflection lines are standard tools for surface interrogation.
We study the correlations between them. We show that isophotes and
reflection lines are different (but not disjunct) classes of surface
curves. Furthermore, we introduce the concept of reflection circles
as a generalization of isophotes and reflection lines. Reflection
circles can be considered as the mirror images of a family of concentric
circles on the surface. We show that reflection circles contain both
isophotes and reflection lines as special cases.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Theisel:1997:CCC,
author = {Theisel, H. and Farin, G.},
title = {The curvature of characteristic curves on surfaces},
journal = {IEEE Computer Graphics and Applications},
year = {1997},
volume = {17},
pages = {88-96},
number = {6},
abstract = {Analyzing and interrogating designed surfaces remains an important
and widely researched issue in computer-aided geometric design (CAGD).
Treating families of characteristic curves on the surface proves
a popular method of doing this. We show how to compute the curvature
and geodesic curvature of characteristic curves on surfaces, such
as contour lines, lines of curvature, asymptotic lines, isophotes,
and reflection lines.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{TheiselRZS04,
author = {Holger Theisel and Christian R{\"o}ssl and Rhaleb Zayer and Hans-Peter
Seidel},
title = {Normal Based Estimation of the Curvature Tensor for Triangular Meshes.},
booktitle = {Pacific Conference on Computer Graphics and Applications},
year = {2004},
pages = {288-297},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Thomaszewski2006,
author = {Bernhard Thomaszewski and Markus Wacker and Wolfgang Strasser},
title = {A Consistent Bending Model for Cloth Simulation with Corotational
Subdivision Finite Elements},
booktitle = {Proceedings of ACM SIGGRAPH/Eurographics Symposium on Computer Animation
(SCA 2006)},
year = {2006},
pages = {107--116},
owner = {mario},
timestamp = {2006.10.27}
}
@BOOK{Timoshenko:1979:TPS,
title = {Theory of Plates and Shells},
publisher = {McGraw Hill},
year = {1979},
author = {Timoshenko, S. P.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MANUAL{taucs2.2,
title = {\textsc{Taucs}: A Library of Sparse Linear Solvers, version 2.2},
author = {Sivan Toledo},
organization = {Tel-Aviv University},
address = {Available online at \url{http://www.tau.ac.il/~stoledo/taucs/}},
month = sep,
year = {2003},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Tosun:2007:SOU,
author = {E. Tosun and Y. I. Gingold and J. Reisman and D. Zorin},
title = {Shape optimization using reflection lines},
booktitle = {SGP '07: Proceedings of the fifth Eurographics symposium on Geometry
processing},
year = {2007},
pages = {193--202},
address = {Aire-la-Ville, Switzerland, Switzerland},
publisher = {Eurographics Association},
location = {Barcelona, Spain}
}
@INPROCEEDINGS{Touma:1998:TMC,
author = {Costa Touma and Craig Gotsman},
title = {Triangle Mesh Compression},
booktitle = {Proceedings of Graphics Interface},
year = {1998},
pages = {26--34},
month = {June},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{TrefethenBau,
title = {Numerical Linear Algebra},
publisher = {SIAM},
year = {2000},
author = {Lloyd~N. Trefethen and Bau, III, David},
address = {Philadelphia},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Tsuchiya:1990:NDS,
author = {Tsuchiya, Takuya},
title = {A note on discrete solutions of the Plateau problem},
journal = {Math. Comp.},
year = {1990},
volume = {54},
pages = {131--138},
number = {189},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Tsuchiya:1987:DSP,
author = {Tsuchiya, Takuya},
title = {Discrete solution of the Plateau problem and its convergence},
journal = {Math. Comp.},
year = {1987},
volume = {49},
pages = {157--165},
number = {179},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Tsuchiya:1986:TMA,
author = {Tsuchiya, Takuya},
title = {On two methods for approximating minimal surfaces in parametric form},
journal = {Math. Comp.},
year = {1986},
volume = {46},
pages = {517--529},
number = {174},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Turk:2002:MWI,
author = {Greg Turk and James F. O'Brien},
title = {Modelling with implicit surfaces that interpolate},
journal = j-TOG,
year = {2002},
volume = {21},
pages = {855--873},
number = {4},
month = oct,
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{turk99variationalimplicits,
author = {Greg Turk and James F. O'Brien},
title = {Shape transformation using variational implicit functions},
booktitle = {SIGGRAPH '99: Proceedings of the 26th annual conference on Computer
graphics and interactive techniques},
year = {1999},
pages = {335--342},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Tutte+1963a,
author = {W. T. Tutte},
title = {How to Draw a Graph},
journal = {Proc. London Mathematical Society},
year = {1963},
volume = {13},
pages = {743--768},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Uguraz:1981:SPS,
title = {Stresses in Plates and Shells},
publisher = {McGraw Hill},
year = {1981},
author = {Uguraz, A. C.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Ullmer:1997:MMP,
author = {Ullmer, B. and Ishii, H.},
title = {The {metaDESK}: models and prototypes for tangible user interfaces},
journal = {Proceedings of the 10th annual ACM symposium on User interface software
and technology},
year = {1997},
pages = {223--232},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{Underwood:1993:CBM,
author = {Underwood, A.},
title = {Constructing Barriers to Minimal Surfaces from Polyhedral Data},
school = {Princeton},
year = {1993},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{Vaidya91,
author = {Pravin~M. Vaidya},
title = {Solving linear equations with symmetric diagonally dominant matrices
by constructing good preconditioners},
note = {Unpublished manuscript. A talk based on the manuscript was presented
at the IMA Workshop on Graph Theory and Sparse Matrix Computation,
October 1991, Minneapolis.},
year = {1991},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Keulen:1993:NLT,
author = {Van Keulen, F. and Bont, A. and Ernst, L. J.},
title = {Non linear thin shell analysis using a curved triangular element},
journal = {Computer Methods in Applied Mechanics and Engineering},
year = {1993},
volume = {103},
pages = {315},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Velho:2001:4S,
author = {Luiz Velho and Denis Zorin},
title = {4-8 Subdivision},
journal = {Computer Aided Geometric Design},
year = {2001},
volume = {18},
pages = {397--427},
number = {5},
month = {June},
editor = {Ulrich Rief and Leif Kobbelt},
keywords = {Subdivision schemes; Four-directional grids; Laves tilings; Quincunx
lattice; Binary 4-8 refinement; Two-pass smoothing}
}
@ARTICLE{Villard:2005:AMC,
author = {Villard, J. and Borouchaki, H.},
title = {Adaptive meshing for cloth animation},
journal = {Engineering with Computers},
year = {2005},
volume = {20},
pages = {333-341},
number = {4},
annotation = {Most of the numerical simulation methods regarding cloth draping are
based on mechanical models. Graphically, the representation of this
model is likely to be a uniform grid. Fabrics being a very flexible
material, a number of wrinkles appear on its surface when submitted
to free or constrained motion (collision/ applied load, supports).
The problem regarding the simulation run is to represent realistically
the mechanical system surface and its associated motion which are
strongly related to mesh discretization. We propose a new method
based on adaptive meshing allowing the mechanical system to behave
without any constraint related to a uniform mesh. Numerical examples
are given to show the efficiency of the method.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Vlachos01,
author = {Alex Vlachos and J\"{o}rg Peters and Chas Boyd and Jason L. Mitchell},
title = {Curved {PN} triangles},
booktitle = {I3D '01: Proceedings of the 2001 symposium on Interactive 3D graphics},
year = {2001},
pages = {159--166},
address = {New York, NY, USA},
}
@ARTICLE{Volino:2005:EVG,
author = {Volino, P. and Cordier, F. and Magnenat-Thalmann, N.},
title = {From early virtual garment simulation to interactive fashion design},
journal = {Computer Aided Design},
year = {2005},
volume = {37},
pages = {593-608},
number = {6},
annotation = {Virtual garment design and simulation involves a combination of a
large range of techniques, involving mechanical simulation, collision
detection, and user interface techniques for creating garments. Here,
we perform an extensive review of the evolution of these techniques
made in the last decade to bring virtual garments to the reach of
computer applications not only aimed at graphics, but also at CAD
techniques for the garment industry. As a result of the advances
in the developments of virtual garment simulation technologies, we
then detail a framework which fits the needs of the garment industry
of virtual garment design and prototyping, concentrating on interactive
design, simulation and visualization features. The framework integrates
innovative tools aimed towards efficiency and quality in the process
of garment design and prototyping, taking advantage of state-of-the-art
algorithms from the field of mechanical simulation, animation and
rendering. [All rights reserved Elsevier].},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Volino:2001:CEO,
author = {Pascal Volino and Nadia Magnenat-Thalmann},
title = {Comparing efficiency of integration methods for cloth simulation},
booktitle = {Computer Graphics International 2001},
year = {2001},
pages = {265--272},
month = jul,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Volino:2000:ACR,
author = {Volino, P. and Thalmann, N. M.},
title = {Accurate collision response on polygonal meshes},
journal = {Proceedings Computer Animation 2000},
year = {2000},
pages = {154-163},
annotation = {We present a very general geometrical correction method for enforcing
collisions and other geometrical constraints between polygonal mesh
surfaces. It is based on a global resolution scheme that takes advantage
of an efficient use of the conjugate gradient algorithm to find the
appropriate displacement of the mesh vertices that would satisfy
all the constraints simultaneously, and according to momentum conservation
laws. This method has been implemented in a cloth simulation system
along with a collision response model that enforces a minimum "thickness"
distance between cloth surfaces, which can be efficiently integrated
in an simulation scheme based on implicit integration. Some provided
examples illustrate the efficiency of the method.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Volino:2000:IFC,
author = {Pascal Volino and Nadia Magnenat Thalmann},
title = {Implementing Fast Cloth Simulation with Collision Response},
booktitle = {Computer Graphics International 2000},
year = {2000},
pages = {257--268},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Volkov:2003:RTR,
author = {Volkov, V. and Li, Ling},
title = {Real-time refinement and simplification of adaptive triangular meshes},
journal = {IEEE Visualization 2003 (IEEE Cat. No.03CH37496)},
year = {2003},
pages = {155-162},
annotation = {In this paper we present a generic method for incremental mesh adaptation
based on hierarchy of semi-regular meshes. Our method supports any
refinement rule mapping vertices onto vertices such as 1-to-4 split
or radic 3-subdivision. Resulting adaptive mesh has subdivision connectivity
and hence good aspect ratio of triangles. Hierarchic representation
of the mesh allows incremental local refinement and simplification
operations exploiting frame-to-frame coherence. We also present an
out-of-core storage layout scheme designed for semi-regular meshes
of arbitrary subdivision connectivity. It provides high cache coherency
in the data retrieval and relies on the interleaved storage of resolution
levels and maintaining good geometrical proximity within each level.
The efficiency of the proposed method is demonstrated with applications
in physically-based cloth simulation, real-time terrain visualization
and procedural modeling.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{GeoVolodine05,
author = {Tim Volodine and D. Roose and Denis Vanderstraeten},
title = {Smoothing of meshes and point clouds using weighted geometry-aware
bases},
booktitle = {Proceedings of the 4th International Conference on Geometric Modeling
and Processing (GMP)},
year = {2006},
pages = {687--693},
month = {July},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{Volodine05,
author = {Tim Volodine and Denis Vanderstraeten and Dirk Roose},
title = {Reconstruction and smoothing of polygonal curves},
institution = {Department of Computer Science, Katholieke Universiteit Leuven},
year = {2005},
note = {Presented as a poster at SGP 2005.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Vorsatz:2001:FSR,
author = {Vorsatz, J. and Rossl, C. and Kobbelt, L. P. and Seidel, H. P.},
title = {Feature sensitive remeshing},
journal = j-CGF,
year = {2001},
volume = {20},
pages = {C/393-C/401},
number = {3},
abstract = {Remeshing artifacts are a fundamental problem when converting a given
geometry into a triangle mesh. We propose a new remeshing technique
that is sensitive to features. First, the resolution of the mesh
is iteratively adapted by a global restructuring process which additionally
optimizes the connectivity. Then a particle system approach evenly
distributes the vertices across the original geometry. To exactly
find the features we extend this relaxation procedure by an effective
mechanism to attract the vertices to feature edges. The attracting
force is imposed by means of a hierarchical curvature field and does
not require any thresholding parameters to classify the features.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{VRS:SM:03,
author = {Jens Vorsatz and Christian R{\"o}ssl and Hans-Peter Seidel},
title = {Dynamic Remeshing and Applications},
booktitle = {Proceedings Solid Modeling},
year = {2003},
pages = {167--175},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{wang2008ucp,
author = {Wang, H. and Jin, M. and He, Y. and Gu, X. and Qin, H.},
title = {{User-controllable polycube map for manifold spline construction}},
booktitle = {Proceedings of the 2008 ACM symposium on Solid and physical modeling},
year = {2008},
pages = {397--404},
organization = {ACM New York, NY, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{wang2006ess,
author = {Wang, K. and Caltech, W. and Tong, Y. and Desbrun, M. and Schr{\"o}der,
P.},
title = {{Edge subdivision schemes and the construction of smooth vector fields}},
journal = j-TOG,
year = {2006},
volume = {25},
pages = {1041--1048},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Wang:2006:STS,
author = {Wang, K. and He, Y. and Guo, X. and Gu, X. and Qin, H.},
title = {Spline Thin-Shell Simulation of Manifold Surfaces},
booktitle = {Computer Graphics International},
year = {2006},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Wang:2001:NSP,
author = {Wang, Ming},
title = {On the necessity and sufficiency of the patch test for convergence
of nonconforming finite elements},
journal = {SIAM J. Numer. Anal.},
year = {2001},
volume = {39},
pages = {363--384 (electronic)},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{WangRegression2007,
author = {Robert Y. Wang and Kari Pulli and Jovan Popovi\'{c}},
title = {Real-time enveloping with rotational regression},
journal = j-TOG,
year = {2007},
volume = {26},
pages = {73},
number = {3},
issn = {0730-0301}
}
@ARTICLE{Wang:1992:ACQ,
author = {Wang, Tian Jun},
title = {A {${C}^2$}-quintic spline interpolation scheme on triangulation},
journal = {Comput. Aided Geom. Design},
year = {1992},
volume = {9},
pages = {379--386},
number = {5},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{wang:93,
author = {X. Wang},
title = {Incomplete Factorization Preconditioning for Least Squares Problems},
school = {Department of Mathematics, University of Illinois at Urbana-Champaign},
year = {1993},
type = {{Ph.D.} thesis},
address = {Urbana, IL},
kwds = {iter, precond},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{wagb:97,
author = {X. Wang and K. A. Gallivan and R. Bramley},
title = {{CIMGS}: An Incomplete Orthogonal Factorization Preconditionier},
journal = {SIAM J. Sci. Comput.},
year = {1997},
volume = {18},
pages = {516--536},
kwds = {iter, precond},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Wang:2002:MEL,
author = {Wang, Xiaohuan Corina and Phillips, Cary},
title = {Multi-weight enveloping: least-squares approximation techniques for
skin animation},
booktitle = {Proc.\ SCA},
year = {2002},
pages = {129--138},
acmid = {545283},
keywords = {enveloping, skinning, surface deformation},
numpages = {10},
}
@ARTICLE{Resizing:2008,
author = {Yu-Shuen Wang and Chiew-Lan Tai and Olga Sorkine and Tong-Yee Lee},
title = {Optimized Scale-and-Stretch for Image Resizing},
journal = j-TOG,
year = {2008},
volume = {27},
pages = {to appear},
number = {5}
}
@ARTICLE{wardetzky06quadbend,
author = {Max Wardetzky and Miklos Bergou and David Harmon and Denis Zorin
and Eitan Grinspun},
title = {Discrete Quadratic Curvature Energies},
journal = {CAGD (to appear)},
year = {2007},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{wardetzky2007dqc,
author = {Wardetzky, M. and Bergou, M. and Harmon, D. and Zorin, D. and Grinspun,
E.},
title = {{Discrete quadratic curvature energies}},
journal = {Computer Aided Geometric Design},
year = {2007},
volume = {24},
pages = {499--518},
number = {8-9},
owner = {sorkine},
publisher = {Elsevier},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Wardetzky:2007:DLO,
author = {Wardetzky, Max and Mathur, Saurabh and K\"{a}lberer, Felix and Grinspun,
Eitan},
title = {Discrete {L}aplace operators: no free lunch},
booktitle = p-SGP,
year = {2007},
pages = {33--37},
}
@ARTICLE{wareham2008bone,
author = {Wareham, R. and Lasenby, J.},
title = {Bone {G}low: An Improved Method for the Assignment of Weights for
Mesh Deformation},
journal = {Articulated Motion and Deformable Objects},
year = {2008},
pages = {63--71},
publisher = {Springer}
}
@UNPUBLISHED{warren,
author = {Joe Warren},
title = {Subdivision Methods for Geometric Design},
note = {Unpublished manuscript},
month = {November},
year = {1995},
optannote = {{\tt http://www.cs.rice.edu\-/\~/jwarren\-/papers\-/book.ps.gz}},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Warren:2001:SMG,
title = {Subdivision Methods for Geometric Design},
publisher = {Morgan Kaufmann},
year = {2001},
author = {J. Warren and H. Weimer},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{WarrenSubdivision,
title = {Subdivision Methods for Geometric Design: A Constructive Approach},
publisher = {Morgan Kaufmann Publishers Inc.},
year = {2001},
author = {Joe Warren and Henrik Weimer},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{warren-salmon-93,
author = {Michael S. Warren and John K. Salmon},
title = {A parallel Hashed Oct-Tree {N}-Body Algorithm},
booktitle = {Proceedings of Supercomputing},
year = {1993},
series = {The SCxy Conference series},
address = {Portland, Oregon},
month = {November},
organization = {ACM/IEEE},
abstract = {
VERY GOOD PAPER
Barnes-Hut higher accuracy algorithm. Introduction of the HASHED
octree idea
Discussion on tree construction an Pealno-Hilbert, Morton order ordering
Discussion on the special data-structures.
Tree construction less than 7\% of the computation. 4.9 GFlops/s
},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{warren-salmon-92,
author = {Michael S. Warren and John K. Salmon},
title = {Astrophysical {N}-body simulations using hierarchical tree data structures},
booktitle = {Proceedings of Supercomputing},
year = {1992},
series = {The SCxy Conference series},
address = {Minneapolis, Minnesota},
month = {November},
organization = {ACM/IEEE},
abstract = {
Barnes-Hut higher accuracy algorithm. Orthogonal recursive bisection.
Gordon Bell Award. FOR TIME CRITICAL KERNELS ASSEMBLY WAS USED. },
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Weber:2009:CBC,
author = {Ofir Weber and Mirela Ben-Chen and Craig Gotsman},
title = {Complex Barycentric Coordinates with Applications to Planar Shape
Deformation},
journal = j-CGF,
year = {2009},
volume = {28},
pages = {587--597},
number = {2}
}
@ARTICLE{Weber:2010:CCM,
author = {Ofir Weber and Craig Gotsman},
title = {Controllable Conformal Maps for Shape Deformation and Interpolation},
journal = j-TOG,
year = {2010},
volume = {29},
pages = {78:1--78:11},
number = {4}
}
@ARTICLE{Skinning:2007,
author = {Ofir Weber and Olga Sorkine and Yaron Lipman and Craig Gotsman},
title = {Context-Aware Skeletal Shape Deformation},
journal = j-CGF,
year = {2007},
volume = {26},
pages = {265--273},
number = {3}
}
@TECHREPORT{weimer97,
author = {Henrik Weimer and Joe Warren},
title = {Variational Subdivision for Laplacian Splines},
institution = {Rice University, Dept. of Computer Science},
year = {1997},
number = {TR97-291},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{weinkauf10b,
author = {T.~Weinkauf and Y.~Gingold and O.~Sorkine},
title = {Topology-based Smoothing of {2D} Scalar Fields with {$C^1$}-Continuity},
journal = {Comput.\ Graph.\ Forum (proc.\ EuroVis)},
year = {2010},
volume = {29},
pages = {1221--1230},
number = {3},
}
@INPROCEEDINGS{welch94freeform,
author = {William Welch and Andrew Witkin},
title = {Free-form shape design using triangulated surfaces},
booktitle = {ACM SIGGRAPH},
year = {1994},
pages = {247--256},
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{welch92a,
author = {William Welch and Andrew Witkin},
title = {Variational surface modeling},
booktitle = {Proceedings of ACM SIGGRAPH},
year = {1992},
pages = {157--166},
keywords = {surface design, constrained optimization, interaction
techniques},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Weng:2006:SDU,
author = {Weng, Yanlin and Xu, Weiwei and Wu, Yanchen and Zhou, Kun and Guo,
Baining},
title = {2D shape deformation using nonlinear least squares optimization},
journal = {Vis. Comput.},
year = {2006},
volume = {22},
pages = {653--660},
month = {September},
acmid = {1165416},
address = {Secaucus, NJ, USA},
issn = {0178-2789},
issue = {9},
keywords = {Area preservation, Character animation, Image editing, Object manipulation},
numpages = {8},
publisher = {Springer-Verlag New York, Inc.},
}
@INPROCEEDINGS{West:2000:VIN,
author = {M. West and C. Kane and J. E. Marsden and M. Ortiz},
title = {Variational Integrators, the Newmark Scheme, and Dissipative Systems},
booktitle = {International Conference on Differential Equations 1999},
year = {2000},
pages = {1009 - 1011},
address = {Berlin},
publisher = {World Scientific},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Westermann:1999:RTE,
author = {Westermann, R. and Kobbelt, L. and Ertl, T.},
title = {Real-time exploration of regular volume data by adaptive reconstruction
of isosurfaces},
journal = {Visual Computer},
year = {1999},
volume = {15},
pages = {100-111},
number = {2},
abstract = {Proposes an adaptive approach for the fast reconstruction of isosurfaces
from regular volume data at arbitrary levels of detail. The algorithm
has been designed to enable real-time navigation through complex
structures while providing user-adjustable resolution levels. Since
adaptive on-the-fly reconstruction and rendering is performed from
a hierarchical octree representation of the volume data, the method
does not depend on preprocessing with respect to a specific isovalue,
thus the user can browse interactively through the set of all possible
isosurfaces. Special attention is paid to the fixing of cracks in
the surface where the adaptive reconstruction level changes and to
the efficient estimation of the isosurface's curvature.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{WhaleyDo98,
author = {R.~Clint Whaley and Jack~J. Dongarra},
title = {Automatically Tuned Linear Algebra Software},
booktitle = {Supercomputing '98: Proceedings of the ACM/IEEE conference on Supercomputing
(CDROM)},
year = {1998},
pages = {1--27},
address = {Washington, DC, USA},
publisher = {IEEE Computer Society},
note = {Available online at \url{http://math-atlas.sourceforge.net}},
location = {San Jose, CA}
}
@ARTICLE{WhaleyPeDo2000,
author = {R. Clint Whaley and Antoine Petitet and Jack J. Dongarra},
title = {Automated Empirical Optimization of Software and the {ATLAS} Project},
journal = {Parallel Computing},
year = {2001},
volume = {27},
pages = {3--35},
number = {1--2}
}
@ARTICLE{whitney-55,
author = {Whitney, Hassler},
title = {On singularities of mappings of euclidean spaces. {I}. {M}appings
of the plane into the plane},
journal = {Ann. of Math. (2)},
year = {1955},
volume = {62},
pages = {374--410},
mrclass = {56.0X},
mrnumber = {17,518d},
mrrevr = {R. Bott},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Willmore:1993:RG,
title = {Riemannian geometry},
publisher = {The Clarendon Press Oxford University Press},
year = {1993},
author = {Willmore, T. J.},
pages = {xii+318},
series = {Oxford Science Publications},
address = {New York},
mrclass = {53-02 (53-01 53C42)},
mrnumber = {MR1261641 (95e:53002)},
mrreviewer = {Paul E. Ehrlich},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Willmore:1968:MCIS,
author = {Willmore, T. J.},
title = {Mean curvature of immersed surfaces},
journal = {An. \c Sti. Univ. ``All. I. Cuza'' Ia\c si Sec\c t. I a Mat. (N.S.)},
year = {1968},
volume = {14},
pages = {99--103},
mrclass = {53.55},
mrnumber = {MR0238220 (38 \#6496)},
mrreviewer = {H. B. Griffiths},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Willmore:1965:NES,
author = {Willmore, T. J.},
title = {Note on embedded surfaces},
journal = {An. \c Sti. Univ. ``Al. I. Cuza'' Ia\c si Sec\c t. I a Mat. (N.S.)},
year = {1965},
volume = {11B},
pages = {493--496},
mrclass = {53.01 (53.74)},
mrnumber = {MR0202066 (34 \#1940)},
mrreviewer = {H. B. Griffiths},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Wilson:2004:TIT,
author = {Wilson, A. D.},
title = {Touch{L}ight: an imaging touch screen and display for gesture-based
interaction},
booktitle = {ICMI '04: Proceedings of the 6th international conference on Multimodal
interfaces},
year = {2004},
pages = {69--76},
address = {New York, NY, USA},
location = {State College, PA, USA},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Winkenbach:1994:CPI,
author = {Georges Winkenbach and David H. Salesin},
title = {Computer-Generated Pen-And-Ink Illustration},
booktitle = {Proceedings of SIGGRAPH 94},
year = {1994},
pages = {91--100},
month = jul,
owner = {sorkine},
timestamp = {2008.10.28}
}
@INPROCEEDINGS{witkin94particles,
author = {Andrew P. Witkin and Paul S. Heckbert},
title = {Using particles to sample and control implicit surfaces},
booktitle = {ACM SIGGRAPH},
year = {1994},
pages = {269--277},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Wong:2005:DIB,
author = {Wong, Wingo Sai-Keung and Baciu, George},
title = {Dynamic interaction between deformable surfaces and nonsmooth objects},
journal = {IEEE Transactions on Visualization and Computer Graphics},
year = {2005},
volume = {11},
pages = {329-340},
number = {3},
annotation = {In this paper, we introduce new techniques that enhance the computational
performance for the interactions between sharp objects and deformable
surfaces. The new formulation is based on a time-domain predictor-corrector
model. For this purpose, we define a new kind of (pi, beta, I)-surface.
The partitioning of a deformable surface into a finite set of (pi,
beta, I)-surfaces allows us to prune a large number of noncolliding
feature pairs. This leads to a significant performance improvement
in the collision detection process. The intrinsic collision detection
is performed in the time domain. Although it is more expensive compared
to the static interference test, it avoids portions of the surfaces
passing through each other in a single time step. In order to resolve
all the possible collision events at a given time, a penetration-free
motion space is constructed for each colliding particle. By keeping
the velocity of each particle inside the motion space, we guarantee
that the current colliding feature pairs will not penetrate each
other in the subsequent motion. A static analysis approach is adopted
to handle friction by considering the forces acting on the particles
and their velocities. In our formulation, we further reduce the computational
complexity by eliminating the need to compute repulsive forces.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Wood:2002:WLC,
author = {J. Wood},
title = {Witten's lectures on crumpling},
journal = {Physica A: Statistical Mechanics and its Applications},
year = {2002},
volume = {313},
pages = {83--109},
number = {1--2},
month = {October},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Wu:2005:SRH,
author = {Wu, J. and Kobbelt, L.},
title = {Structure recovery via hybrid variational surface approximation},
journal = j-CGF,
year = {2005},
volume = {24},
pages = {277-284},
number = {3},
abstract = {Aiming at robust surface structure recovery, we extend the powerful
optimization technique of variational shape approximation by allowing
for several different primitives to represent the geometric proxy
of a surface region. While the original paper only considered planes,
we also include spheres, cylinders, and more complex rolling-ball
blend patches. The motivation for this choice is the fact that most
technical CAD objects consist of patches from these four categories.
The robust segmentation and global optimization properties which
have been observed for the variational shape approximation carry
over to our hybrid extension. Hence, we can use our algorithm to
segment a given mesh model into characteristic patches and provide
a corresponding geometric proxy for each patch. The expected result
that we recover surface structures more robustly and thus obtain
better approximations with a smaller number of primitives, is validated
and demonstrated on a number of examples.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Wu:2004:OSS,
author = {Wu, J. and Kobbelt, L.},
title = {Optimized sub-sampling of point sets for surface splatting},
journal = j-CGF,
year = {2004},
volume = {23},
pages = {643-652},
number = {3},
abstract = {Using surface splats as a rendering primitive has gained increasing
attention recently due to its potential for high-performance and
high-quality rendering of complex geometric models. However, as with
any other rendering primitive, the processing costs are still proportional
to the number of primitives that we use to represent a given object.
This is why complexity reduction for point-sampled geometry is as
important as it is, e.g., for triangle meshes. In this paper we present
a new subsampling technique for dense point clouds which is specifically
adjusted to the particular geometric properties of circular or elliptical
surface splats. A global optimization scheme computes an approximately
minimal set of splats that covers the entire surface while staying
below a globally prescribed maximum error tolerance epsiv. Since
our algorithm converts pure point sample data into surface splats
with normal vectors and spatial extent, it can also be considered
as a surface reconstruction technique which generates a hole-free
piecewise linear C/sup -1/ continuous approximation of the input
data. Here we can exploit the higher flexibility of surface splats
compared to triangle meshes. Compared to previous work in this area
we are able to obtain significantly lower splat numbers for a given
error tolerance.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Wu:2005:PS,
author = {Wu, J. and Zhang, Z. and Kobbelt, L.},
title = {Progressive splatting},
journal = {Point-Based Graphics 2005 (IEEE Cat. No. 05EX1159)},
year = {2005},
pages = {25-142},
abstract = {Surface splatting enables high quality and efficient rendering algorithms
for dense point-sampled datasets. However, with increasing data complexity,
the need for multiresolution models becomes evident. For triangle
meshes, progressive or continuous level of detail hierarchies have
proven to be very effective when it comes to (locally) adapt the
resolution level of the 3D model to the application-dependent quality
requirements. In this paper we transfer this concept to splat-based
geometry representations. Our progressive splat decimation procedure
uses the standard greedy approach but unlike previous work, it uses
the full splat geometry in the decimation criteria and error estimates,
not just the splat centers. With two improved error metrics, this
new greedy framework offers better approximation quality than other
progressive splat decimators. It comes even close to the recently
proposed globally optimized single-resolution sub-sampling techniques
while being faster by a factor of 3.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Wu:2003:MFW,
author = {Wu, M. and Balakrishnan, R.},
title = {Multi-finger and whole hand gestural interaction techniques for multi-user
tabletop displays},
booktitle = {UIST '03: Proceedings of the 16th annual ACM symposium on User interface
software and technology},
year = {2003},
pages = {193--202},
address = {New York, NY, USA},
location = {Vancouver, Canada},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Wyvill99,
author = {Brian Wyvill and Eric Galin and Andrew Guy},
title = {Extending the {CSG} tree: warping, blending and boolean operations
in an implicit surface modeling system},
journal = j-CGF,
year = {1999},
volume = {18},
pages = {149--158},
number = {2}
}
@UNPUBLISHED{GU:TutDiscRicciParam,
author = {X. Gu, F. Luo and S.-T. Yau},
title = {Tutorial on Discrete Ricci Flow for Global Parameterizations},
note = {Manuscript},
year = {2005},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{XiaVarshney96,
author = {Julie C. Xia and Amitabh Varshney},
title = {Dynamic view-dependent simplification for polygonal models},
booktitle = {Proceedings of IEEE Visualization},
year = {1996},
pages = {327--334}
}
@INPROCEEDINGS{PoissonShapeInterpolation05,
author = {Dong Xu and Hongxin Zhang and Qing Wang and Hujun Bao},
title = {Poisson Shape Interpolation},
booktitle = {Proceedings of SPM},
year = {2005},
pages = {267--274}
}
@ARTICLE{Xu04,
author = {Xu, G.},
title = {Discrete {L}aplace-{B}eltrami operators and their convergence},
journal = {Comput. Aided Geom. Design},
year = {2004},
volume = {21},
pages = {767--784},
number = {8},
coden = {CAGDEX},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
mrclass = {58J05 (65D18 65N12)},
mrnumber = {MR2091142 (2005j:58027)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Xu:2004:CDL,
author = {Xu, Guoliang},
title = {Convergence of discrete {L}aplace-{B}eltrami operators over surfaces},
journal = {Comput. Math. Appl.},
year = {2004},
volume = {48},
pages = {347--360},
number = {3-4},
coden = {CMAPDK},
fjournal = {Computers \& Mathematics with Applications. An International Journal},
issn = {0898-1221},
mrclass = {39A12 (35J25 65N12)},
mrnumber = {MR2091201 (2005d:39087)},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{Xu06,
author = {Xu, G.},
title = {Consistent Approximations of Some Geometric Differential Operators},
institution = {Institute of Computational Mathematics and Scientific/Engineering
Computing, Chinese Academy of Sciences},
year = {2000},
number = {ICM-06-001},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{XuPB06,
author = {Xu, G. and Pan, Q. and Bajaj, C. L.},
title = {Discrete surface modelling using partial differential equations},
journal = {Comput. Aided Geom. Design},
year = {2006},
volume = {23},
pages = {125--145},
number = {2},
coden = {CAGDEX},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
mrclass = {65D17 (35K55)},
mrnumber = {MR2189440 (2006j:65043)},
mrreviewer = {Marian-Ioan Munteanu},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{XuZ08,
author = {Xu, G. and Zhang, Q.},
title = {A general framework for surface modeling using geometric partial
differential equations},
journal = {Comput. Aided Geom. Design},
year = {2008},
volume = {25},
pages = {181--202},
number = {3},
coden = {CAGDEX},
fjournal = {Computer Aided Geometric Design},
issn = {0167-8396},
mrclass = {65D17},
mrnumber = {MR2389939},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{xu2007gsm,
author = {Xu, G. and Zhang, Q.},
title = {{$G^2$ surface modeling using minimal mean-curvature-variation flow}},
journal = {Computer-Aided Design},
year = {2007},
volume = {39},
pages = {342--351},
number = {5},
owner = {sorkine},
publisher = {Elsevier},
timestamp = {2008.10.27}
}
@ARTICLE{XuZ07,
author = {G. Xu and Q. Zhang},
title = { G2 surface modeling using minimal mean-curvature-variation flow},
journal = { Computer-Aided Design},
year = {2007},
volume = {39},
pages = {342-351},
issue = {5},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{XueYu:Honeycomb,
author = {Y. Xue and T. P.-Y. Yu},
title = {Honeycomb and $k$-fold {H}ermite Subdivision Schemes},
journal = {Journal of Computational and Applied Mathematics},
year = {2005},
volume = {177},
pages = {401-425},
number = {2},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{XueYuDuchamp:JetSubdivision,
author = {Y. Xue and T. P.-Y. Yu and T. Duchamp},
title = {Jet Subdivision Schemes on the $k$-Regular Complex},
journal = {Computer Aided Geometric Design},
year = {2006},
volume = {23},
pages = {361-396},
number = {4},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{YagouOB02:2002:MSM,
author = {Hirokazu Yagou and Yutaka Ohtake and Alexander G. Belyaev},
title = {Mesh Smoothing via Mean and Median Filtering Applied to Face Normals.},
booktitle = {GMP},
year = {2002},
pages = {124-131},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Yamauchi:2005:TR,
author = {Yamauchi, H. and Lensch, H. P. A. and Haber, J. and Seidel, H. P.},
title = {Textures revisited},
journal = {Visual Computer},
year = {2005},
volume = {21},
pages = {217--241},
number = {4},
abstract = {We describe texture generation methods for complex objects. Recently
developed 3D scanning devices and high-resolution cameras can capture
the complex geometry of an object and yield high-resolution images.
However, generating a textured model from this input data is still
a difficult problem. This task is divided into three sub-problems:
parameterization, texture combination, and texture restoration. A
low-distortion parameterization method is presented, which minimizes
geometry stretch energy. Photographs of the object taken from multiple
viewpoints under modestly uncontrolled illumination conditions are
merged into a seamless texture using our new texture combination
method. We also demonstrate a texture restoration method that can
fill in missing pixel information when the input photographs do not
provide sufficient information to cover the entire surface due to
self-occlusion or registration errors. Our methods are fully automatic,
except for the registration process between a 3D model and input
photographs. We demonstrate the application of our method to human
face models for evaluation. The techniques presented in this paper
make a consistent and complete pipeline to generate the texture of
a complex object.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Yang:1993:N,
title = {NUMISHEET93},
publisher = {RIKEN},
year = {1993},
author = {Yang, D. Y. and Jung, D. W. and Song, L. S. and Yoo, D. J. and Lee,
J. H. and Makinouchi, A. and Nakamachi, E. and O\~{n}ate, E. and
Wagoner, R. H.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Yang:2006:CSS,
author = {Yang, Xiaosong and Somasekharan, Arun and Zhang, Jian J.},
title = {Curve skeleton skinning for human and creature characters},
journal = {Comput.\ Animat.\ Virtual Worlds},
year = {2006},
volume = {17},
pages = {281--292},
number = {3-4},
acmid = {1144471},
issn = {1546-4261},
keywords = {curve-skeleton, deformation, skeleton},
numpages = {12},
}
@ARTICLE{YangG96,
author = {Y.D. Yang and J.B. Gao},
title = {Remarks on the Ciarlet-Raviart mixed finite element},
journal = {Electronic Transactions on Numerical Analysis},
year = {1996},
volume = {4},
pages = {158-164},
issn = {1068-9613},
owner = {sorkine},
publisher = {Kent State University},
timestamp = {2008.10.27}
}
@ARTICLE{YangGao96,
author = {Yang, Y. D. and Gao, J. B.},
title = {Remarks on the {C}iarlet-{R}aviart mixed finite element},
journal = {Electron. Trans. Numer. Anal.},
year = {1996},
volume = {4},
pages = {158--164 (electronic)},
number = {Dec.},
fjournal = {Electronic Transactions on Numerical Analysis},
issn = {1068-9613},
mrclass = {65N15 (65N30)},
mrnumber = {MR1431117 (97j:65165)},
mrreviewer = {Murli M. Gupta},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Yasui:2004:SQA,
author = {Yasui, Y. and Kanai, T.},
title = {Surface quality assessment of subdivision surfaces on programmable
graphics hardware},
journal = {Proceedings. Shape Modeling International 2004 (IEEE Cat. No.04PR2075)},
year = {2004},
pages = {129-138},
abstract = {In this paper, we propose a method of subdivision surface quality
assessment by reflection lines on programmable graphics hardware
(GPU). Using reflection lines is effective for surface quality assessment
because the shapes of these lines are changed according to a slight
variance of surface shapes. This fact also implies that reflection
lines should be calculated precisely. We introduce an intuitive,
fast and robust approach for calculating reflection lines by using
a plane light source texture based on a fragment program of recently
introduced GPU. In addition, we describe a method of calculating
position and normal of subdivision surfaces for each fragment on
GPU. As our framework for calculating reflection lines does not depend
on the level of subdivision, a precise assessment can be established
even for low levels of subdivision polygons.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Yifan:1997:DHL,
author = {Yifan, Chen and Beier, K. P. and Papageorgiou, D.},
title = {Direct highlight line modification on NURBS surfaces},
journal = {Computer-Aided Geometric Design},
year = {1997},
volume = {14},
pages = {583-601},
number = {6},
abstract = {Reflection characteristics of surfaces, as visualized by highlight
lines, are important design objectives in automotive styling. A method
is presented that allows the direct modification of a highlight line
on a NURBS surface. The algorithm presented will automatically adjust
the control points of the NURBS surface resulting in a modified surface
shape that produces the desired highlight line. A system of nonlinear
equations is developed that expresses the relationship between NURBS
control points and reference points on the highlight line. The inverse
problem is solved through linearization by a first-order Taylor expansion.
In addition, a shape control mechanism is introduced that distributes
control point changes over the surface in a coherent and predictable
way. With this mechanism, the user is able to interactively control
the locality, or extent, of the surface modification while maintaining
the desirable highlight line modification.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ying-biros-zorin-03a,
author = {Lexing Ying and George Biros and Denis Zorin},
title = {A kernel-independent adaptive fast multipole algorithm in two and
three dimensions},
journal = {J. Comput. Phys.},
year = {2004},
volume = {196},
pages = {591--626},
number = {2},
address = {San Diego, CA, USA},
issn = {0021-9991},
publisher = {Academic Press Professional, Inc.}
}
@INPROCEEDINGS{ying-biros-zorin-harper-03,
author = {Lexing Ying and George Biros and Denis Zorin and Harper Langston},
title = {A new parallel kernel-independent fast multiple algorithm},
booktitle = {Proceedings of SC03},
year = {2003},
series = {The SCxy Conference series},
address = {Phoenix, Arizona},
month = {November},
organization = {ACM/IEEE},
note = {Gordon Bell Award finalist, Best Student Paper}
}
@INPROCEEDINGS{Ying:2001:TSS,
author = {Lexing Ying and Aaron Hertzmann and Henning Biermann and Denis Zorin},
title = {Texture and Shape Synthesis on surfaces},
booktitle = {Proceedings of 12th Eurographics Workshop on Rendering},
year = {2001},
month = {June}
}
@ARTICLE{ying-zorin-04a,
author = {Lexing Ying and Denis Zorin},
title = {A Simple Construction for Infinitely Smooth Manifolds},
journal = j-TOG,
year = {2004}
}
@ARTICLE{Ying:2004:ASM,
author = {Lexing Ying and Denis Zorin},
title = {A simple manifold-based construction of surfaces of arbitrary smoothness},
journal = j-TOG,
year = {2004},
volume = {23},
pages = {271--275},
number = {3},
address = {New York, NY, USA},
issn = {0730-0301},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Ying:2001:NS,
author = {Lexing Ying and Denis Zorin},
title = {Nonmanifold Subdivision},
booktitle = {Visualization 2001},
year = {2001}
}
@INPROCEEDINGS{Yoshizawa:2002:FTM,
author = {Shin Yoshizawa and Alexander Belyaev},
title = {Fair Triangle Mesh Generations via Discrete Elastica},
booktitle = {Geometric Modeling and Processing},
year = {2002},
address = {Saitama, Japan},
optmonth = {10-12 July},
optpages = {119-123},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Yoshizawa:2005:MMA,
author = {Yoshizawa, S. and Belyaev, A. and Seidel, H. P.},
title = {A moving mesh approach to stretch-minimizing mesh parameterization},
journal = {International Journal of Shape Modeling},
year = {2005},
volume = {11},
pages = {25--42},
number = {1},
abstract = {We propose to use a moving mesh approach, a popular grid adaption
technique in computational mechanics, for fast generating low-stretch
mesh parameterizations. Given a triangle mesh approximating a surface,
we construct an initial parameterization of the mesh and then improve
the parameterization gradually. At each improvement step, we optimize
the parameterization generated at the previous step by minimizing
a weighted quadratic energy where the weights are chosen in order
to minimize the parameterization stretch. This optimization procedure
does not generate triangle flips if the boundary of the parameter
domain is a convex polygon. Moreover already the first optimization
step produces a high-quality mesh parameterization. We compare our
parameterization procedure with several state-of-art mesh parameterization
methods and demonstrate its speed and high efficiency in parameterizing
large and geometrically complex models.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Yoshizawa:2004:FSS,
author = {Yoshizawa, S. and Belyaev, A. and Seidel, H. P.},
title = {A Fast and Simple Stretch-Minimizing Mesh Parameterization},
booktitle = p-SMI,
year = {2004},
pages = {200--208},
}
@INPROCEEDINGS{Yu:HermiteSPIE,
author = {T. P.-Y. Yu},
title = {Approximation Order/Smoothness Tradeoff in {H}ermite Subdivision
Schemes},
booktitle = {Proc. SPIE, Wavelets: Applications in Signal and Image Processing
IX},
year = {2001},
editor = {A. F. Laine and M. A. Unser and A. Aldroubi},
volume = {4478},
pages = {117-128},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Yu:RegHermite,
author = {T. P.-Y. Yu},
title = {On the Regularity Analysis of Interpolatory {H}ermite Subdivision
Schemes},
journal = {Journal of Mathematical Analysis and Applications},
year = {2005},
volume = {302},
pages = {201-216},
number = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{Yu:HermitePar,
author = {T. P.-Y. Yu},
title = {Parametric families of {H}ermite subdivision schemes in dimension
1},
note = {Manuscript, available at \verb$http://www.rpi.edu/~yut/hermite1.pdf$},
year = {1999},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{yu04poisson,
author = {Yizhou Yu and Kun Zhou and Dong Xu and Xiaohan Shi and Hujun Bao
and Baining Guo and Heung-Yeung Shum},
title = {Mesh editing with {P}oisson-based gradient field manipulation},
journal = {ACM Trans.\ Graph.},
year = {2004},
volume = {23},
pages = {644--651},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@MISC{Zarate:1996:NFE,
author = {Za'rate, F.},
title = {New finite elements for plate and shell analysis (in Spanish)},
year = {1996},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{ZTS-Relief-09,
author = {Rony Zatzarinni and Ayellet Tal and Ariel Shamir},
title = {Relief Analysis and Extraction},
journal = {ACM Trans.\ Graph.},
year = {2009},
volume = {28},
number = {5}
}
@INPROCEEDINGS{zayer:2005,
author = {Zayer, Rhaleb and R{\"o}ssl, Christian and Karni, Zachi and Seidel,
Hans-Peter},
title = {Harmonic Guidance for Surface Deformation},
booktitle = {Computer Graphics Forum (Proceedings of Eurographics)},
year = {2005},
pages = {601--609}
}
@INPROCEEDINGS{Zeleznik:1997:TPI,
author = {Zeleznik, R. and Forsberg, A. and Strauss, P.},
title = {Two Pointer Input for 3{D} Interaction},
booktitle = {CM I3D Symposium on Interactive 3D Graphics},
year = {1997},
pages = {115--120},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Zeleznik:1996:SAI,
author = {Robert C. Zeleznik and Kenneth P. Herndon and John F. Hughes},
title = {SKETCH: An Interface for Sketching 3{D} Scenes},
booktitle = {Proceedings of SIGGRAPH 96},
year = {1996},
pages = {163--170},
month = aug,
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Zhang:2001:CSU,
author = {Dongliang Zhang and Matthew M. F. Yuen},
title = {Cloth simulation using multilevel meshes},
journal = {Computers {\&} Graphics},
year = {2001},
volume = {25},
pages = {383--389},
number = {3},
month = jun,
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zhang:2005:FBS,
author = {Zhang, E. and Mischaikow, K. and Turk, G.},
title = {Feature-based surface parameterization and texture mapping},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {1--27},
number = {1},
abstract = {Surface parameterization is necessary for many graphics tasks: texture-preserving
simplification, remeshing, surface painting, and precomputation of
solid textures. The stretch caused by a given parameterization determines
the sampling rate on the surface. In this article, we present an
automatic parameterization method for segmenting a surface into patches
that are then flattened with little stretch. Many objects consist
of regions of relatively simple shapes, each of which has a natural
parameterization. Based on this observation, we describe a three-stage
feature-based patch creation method for manifold surfaces. The first
two stages, genus reduction and feature identification, are performed
with the help of distance-based surface functions. In the last stage,
we create one or two patches for each feature region based on a covariance
matrix of the feature's surface points. To reduce stretch during
patch unfolding, we notice that stretch is a 2*2 tensor, which in
ideal situations is the identity. Therefore, we use the Green-Lagrange
tensor to measure and to guide the optimization process. Furthermore,
we allow the boundary vertices of a patch to be optimized by adding
scaffold triangles. We demonstrate our feature-based patch creation
and patch unfolding methods for several textured models. Finally,
to evaluate the quality of a given parameterization, we describe
an image-based error measure that takes into account stretch, seams,
smoothness, packing efficiency, and surface visibility.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{ZhangButterworth2003,
author = {H. Zhang and E. Fiume},
title = {Butterworth Filtering and Implicit Fairing of Irregular Meshes},
booktitle = {Proceedings of Pacific Graphics},
year = {2003},
pages = {502--506}
}
@ARTICLE{ZhangY04,
author = {Zhang, J. J. and You, L.H.},
title = {Fast Surface Modelling Using a 6th Order PDE},
journal = j-CGF,
year = {September 2004},
volume = {23},
pages = {311-320(10)},
abstract = {<P></P><I>Although the control-point based parametric approach is
used most widely in free-form surface modelling, complementary techniques
co-exist to meet various specialised requirements. The partial differential
equation (PDE) based modelling approach is especially suitable for
satisfying surface boundary constraints. They are also effective
for the generation of families of free-form surfaces, which share
a common base and differ in their secondary features. In this paper,
we present a fast surface modelling method using a sixth order PDE.
This PDE provides enough degrees of freedom not only to accommodate
tangent, but also curvature boundary conditions and offers more shape
control parameters to serve as user controls for the manipulation
of surface shapes. In order to achieve real-time performance, we
have constructed a surface function and developed a high-precision
approximate solution to the 6th order PDE. Unlike some existing PDE-based
techniques, this resolution method can satisfy the boundary conditions
exactly, and is able to create free-form surfaces as fast and almost
as accurately as the closed-form (analytical) solutions. Due to the
fact that it has sufficient degrees of freedom to accommodate the
continuity of 3-sided and 4-sided surface patches at their boundaries,
this method is able to model complex surfaces consisting of multiple
patches. Compared with existing PDE-based modelling methods, this
method is both fast and can solve a larger class of surface modelling
problems</I>. <P></P>Categories and Subject Descriptors (according
to ACM CCS): I.3.5 [Computer Graphics]: Curves, surfaces, solid,
and object representations; physically based modelling},
owner = {sorkine},
timestamp = {2008.10.27},
}
@INPROCEEDINGS{Zhang:2010,
author = {Shaoting Zhang and Andrew Nealen and Dimitris Metaxas },
title = {{Skeleton Based As-Rigid-As-Possible Volume Modeling}},
year = {2010},
editor = {H. P. A. Lensch and S. Seipel},
pages = {21-24},
address = {Norrk\"oping, Sweden},
publisher = {Eurographics Association},
issn = {1017-4656},
}
@ARTICLE{zhou05lmd,
author = {Kun Zhou and Jin Huang and John Snyder and Xinguo Liu and Hujun Bao
and Baining Guo and Heung-Yeung Shum},
title = {Large mesh deformation using the volumetric graph {L}aplacian},
journal = {ACM Trans. Graph,},
year = {2005},
volume = {24},
pages = {496--503},
number = {3},
owner = {sorkine},
timestamp = {2008.10.28}
}
@CONFERENCE{zhou2007dms,
author = {Zhou, K. and Huang, X. and Xu, W. and Guo, B. and Shum, H.Y.},
title = {{Direct manipulation of subdivision surfaces on GPUs}},
booktitle = {International Conference on Computer Graphics and Interactive Techniques},
year = {2007},
organization = {ACM Press New York, NY, USA}
}
@ARTICLE{Zhou:2005:T,
author = {Zhou, K. and Wang, X. and Tong, Y. and Desbrun, M. and Guo, B. and
Shum, H.-Y.},
title = {TextureMontage},
journal = j-TOG,
year = {2005},
volume = {24},
pages = {1148--1155},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zhu:2004:SCA,
author = {Zhu, Huaibing and Jin, Xiaogang and Feng, Jieqing and Peng, Qunsheng},
title = {Survey on cloth animation},
journal = {Journal of Computer Aided Design \& Computer Graphics},
year = {2004},
volume = {16},
pages = {613-618},
number = {5},
annotation = {State-of-the-art cloth animation in the recent twenty years is introduced.
Key techniques in physics-based cloth animation, namely physical
models, numerical methods, collision detection and collision response
for cloth animation are discussed.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{zienkiewicz2000fem,
title = {{The Finite Element Method}},
publisher = {Butterworth-Heinemann},
year = {2000},
author = {Zienkiewicz, O.C. and Taylor, RL}
}
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title = {Nonlinear Computation Mechanics. State of the Art},
publisher = {Springer},
year = {1991},
author = {Zienkiewicz, O. C. and O\~{n}ate, E. and Wriggers, P. and Wagner,
W.},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Zienkiewicz:1989:FEM,
title = {The finite element method},
publisher = {McGraw Hill},
year = {1989},
author = {Zienkiewicz, O. C. and Taylor, R. C.},
note = {1},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zienkiewicz:1997:FEP,
author = {Zienkiewicz, O. C. and Taylor, R. L.},
title = {The finite element patch test revisited: a computer test for convergence,
validation and error estimates},
journal = {Comput. Methods Appl. Mech. Engrg.},
year = {1997},
volume = {149},
pages = {223--254},
number = {1-4},
note = {Symposium on Advances in Computational Mechanics, Vol. 1 (Austin,
TX, 1997) 0045-7825},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zienkiewicz:1990:PBE,
author = {Zienkiewicz, O. C. and Taylor, R. L. and Papadopoulos, P. and O\~{n}ate,
E.},
title = {Plate bending element with discrete constraints: new triangular elements},
journal = {Computer and Structures},
year = {1990},
volume = {35},
pages = {505},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zienkiewicz:1993:LIR,
author = {Zienkiewicz, O. C. and Xu, Z. and Zeng, L. F. and Samuelsson, A.
and Wiberg, N. E.},
title = {Linked interpolation for Reissner-Mindlin plate elements. Part I:
A simple quadrilateral},
journal = {International Journal for Numerical Methods in Engineering},
year = {1993},
volume = {36},
pages = {3043},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zimmermann:2008:SC,
author = {Johannes Zimmermann and Andrew Nealen and Marc Alexa},
title = {Sketching contours},
journal = {Computers {\&} Graphics},
year = {2008},
volume = {32},
pages = {486--499},
number = {5}
}
@INPROCEEDINGS{SilSketch07,
author = {Johannes Zimmermann and Andrew Nealen and Marc Alexa},
title = {SilSketch: automated sketch-based editing of surface meshes},
booktitle = {SBIM '07: Proceedings of the 4th Eurographics workshop on Sketch-based
interfaces and modeling},
year = {2007},
pages = {23--30},
address = {New York, NY, USA},
location = {Riverside, California}
}
@ARTICLE{zlni:88,
author = {Z. Zlatev and H. Nielsen},
title = {Solving Large and Sparse Linear Least-Squares Problems by Conjugate
Gradient Algorithms},
journal = {Comput. Math. Appl.},
year = {1988},
volume = {15},
pages = {185--202},
kwds = {cg, precond, sparse, iter}
}
@INPROCEEDINGS{Zorin:2005:CBE,
author = {Denis Zorin},
title = {Curvature-based Energy for Simulation and Variational Modeling},
booktitle = p-SMI,
pages = {198--206},
}
@ARTICLE{Zorin:2006:CCC,
author = {Zorin, D.},
title = {{Constructing curvature-continuous surfaces by blending}},
journal = p-SGP,
year = {2006},
pages = {31--40},
owner = {sorkine},
publisher = {Eurographics Association Aire-la-Ville, Switzerland, Switzerland},
timestamp = {2008.10.27}
}
@TECHREPORT{Zorin:FCC:2006,
author = {D. Zorin},
title = {Flexibility of curvature-continuous surfaces obtained by blending
Loop subdivision surfaces with quadratic patches.},
institution = {New York University},
year = {2006},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zorin:2000:MFA,
author = {Denis Zorin},
title = {A method for analysis of {$C^1$}-continuity of subdivision surfaces},
journal = {SIAM Journal of Numerical Analysis},
year = {2000},
volume = {37},
pages = {1677-1708},
number = {5},
owner = {sorkine},
timestamp = {2008.10.27}
}
@ARTICLE{Zorin:2000:SSI,
author = {Denis Zorin},
title = {Smoothness of subdivision on irregular meshes},
journal = {Constructive Approximation},
year = {2000},
volume = {16},
pages = {359-397},
number = {3},
owner = {sorkine},
timestamp = {2008.10.27}
}
@UNPUBLISHED{zorin-edges,
author = {Denis Zorin},
title = {Smoothness of subdivision surfaces on the boundary},
note = {preprint, Computer Science Department, Stanford University},
year = {1998},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PHDTHESIS{thesis,
author = {Denis Zorin},
title = {Subdivision and Multiresolution Surface Representations},
school = {Caltech},
year = {1997},
address = {Pasadena},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{zorinTR,
author = {Denis Zorin},
title = {$C^k$ Continuity of Subdivision Surfaces},
institution = {California Institute of Technology},
year = {1996},
number = {CS-TR-96-23},
note = {{\verb+http://www.caltech.edu/~libraries/collections/cs.html+}},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{fullversion,
author = {D. Zorin and E. Grinspun},
title = {Computing Discrete Curvature-based Energy},
note = {in preparation},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{Zorin:2001:SMA,
author = {D.~Zorin and P.~Schr\"{o}der and A.~DeRose and L.~Kobbelt and A.~Levin
and W.~Sweldens.},
title = {Subdivision for modeling and animation},
howpublished = {SIGGRAPH 2001 Course Notes},
year = {2001},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{zorin96interpsubdiv,
author = {Denis Zorin and Peter Schr\"{o}der and Wim Sweldens},
title = {Interpolating Subdivision for meshes with arbitrary topology},
booktitle = {ACM SIGGRAPH},
year = {1996},
pages = {189--192},
owner = {sorkine},
timestamp = {2008.10.28}
}
@ARTICLE{Zorin:2001:FPD,
author = {Denis Zorin and Peter Schr{\"o}der},
title = {A Unified Framework for Primal/Dual Quadrilateral Subdivision Schemes},
journal = {CAGD},
year = {2001},
volume = {18},
pages = {429--454},
number = {5},
owner = {sorkine},
timestamp = {2008.10.27}
}
@TECHREPORT{zorin96,
author = {Denis Zorin and Peter Schr{\"o}der and Wim Sweldens},
title = {Interpolating Subdivision for Meshes of Arbitrary Topology},
institution = {Caltech},
year = {1996},
number = {CS-TR-96-06},
address = {Department of Computer Science, Caltech},
owner = {sorkine},
timestamp = {2008.10.27}
}
@INPROCEEDINGS{Zorin:1997:IMM,
author = {Denis Zorin and Peter Schr{\"{o}}der and Wim Sweldens},
title = {Interactive Multiresolution Mesh Editing},
booktitle = {ACM SIGGRAPH},
year = {1997},
pages = {259--268},
owner = {sorkine},
timestamp = {2008.10.28}
}
@PHDTHESIS{zorinphd,
author = {Denis N. Zorin},
title = {Subdivision and Multiresolution Surface Representations},
school = {Caltech},
year = {1997},
address = {Pasadena, California},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{Corliss:2001:ADA,
title = {Automatic Differentiation of Algorithms: From Simulation to Optimization},
publisher = {Springer},
year = {2001},
editor = {George Corliss and Christ\`ele Faure and Andreas Griewank and Laurent
Hasco\"et and Uwe Naumann},
owner = {sorkine},
timestamp = {2008.10.27}
}
@BOOK{House:2000:CMA,
title = {Cloth Modeling and Animation},
publisher = {A.K. Peters, Ltd.},
year = {2000},
editor = {Donald H. House and David E. Breen},
owner = {sorkine},
timestamp = {2008.10.27}
}
@MISC{reference-number1,
title = {WHAMS-3D, An Explicit 3D finite element program},
owner = {sorkine},
timestamp = {2008.10.27}
}
@PROCEEDINGS{DBLP:conf/sgp/2005,
title = {Third Eurographics Symposium on Geometry Processing, Vienna, Austria,
July 4-6, 2005},
year = {2005},
bibsource = {DBLP, http://dblp.uni-trier.de},
booktitle = p-SGP,
owner = {sorkine},
timestamp = {2008.10.27}
}
@article{Finch:2011:FVG,
author = {Finch, Mark and Snyder, John and Hoppe, Hugues},
title = {Freeform vector graphics with controlled thin-plate splines},
journal = j-TOG,
volume = {30},
number = {6},
year = {2011},
pages = {166:1--166:10},
}
@article{AAIR:Panozzo:2012,
author = {Daniele Panozzo and Ofir Weber and Olga Sorkine},
title = {Robust Image Retargeting via Axis-Aligned Deformation },
journal = {Comput.\ Graph.\ Forum (proc.\ EUROGRAPHICS)},
volume = {31},
number = {2},
year = {2012},
}
@book{MATLAB:2012,
year = {2012},
author = {MATLAB},
title = { 7.13.0.564 (R2011b)},
publisher = {The MathWorks Inc.},
address = {Natick, Massachusetts}
}
@inproceedings{MansonS10a,
title = {Moving Least Squares Coordinates.},
author = {Manson, Josiah and Schaefer, Scott},
pages = {1517-1524},
booktitle = p-SGP,
year = {2010},
}
@inproceedings{Georgiev04,
author = {T.G. Georgiev},
title = {Photoshop Healing Brush: a Tool for Seamless Cloning},
booktitle = {Proc.\ ECCV ACV Workshop},
year = {2004},
pages = {1--8},
}
@inproceedings{chen11,
author = {Chao Chen and Daniel Freedman and Christoph H. Lampert},
title = {Enforcing topological constraints in random field image segmentation},
booktitle = {Proc.\ CVPR},
year = 2011,
pages = {2089-2096},
}
@inproceedings{Gingold:2006:CF,
author = {Gingold, Yotam I. and Zorin, Denis},
title = {Controlled-topology filtering},
booktitle = {Proc. SPM},
year = {2006},
pages = {53--61},
}
@inproceedings{Rustamov:2011,
author = {Raif M. Rustamov},
title = {Multiscale Biharmonic Kernels},
booktitle = p-SGP,
year = {2011},
pages = {1521-1531},
}
@article{Zheng10,
author = {Youyi Zheng and Chiew-Lan Tai},
title = {Mesh Decomposition with Cross-Boundary Brushes},
journal = j-CGF,
year = {2010},
volume = {29},
number = {2},
pages = {527--535},
}
@inproceedings{zhang07,
author = {Hao Zhang and Oliver van Kaick and Ramsay Dyer},
title = {Spectral Methods for Mesh Processing and Analysis},
booktitle = {Proc. of Eurographics State-of-the-art Report},
pages = {1--22},
year = 2007
}
@inproceedings{Carr:2003:SSR,
author = {Carr, J. C. and Beatson, R. K. and McCallum, B. C. and Fright, W. R. and McLennan, T. J. and Mitchell, T. J.},
title = {Smooth surface reconstruction from noisy range data},
booktitle = {Proc.\ ACM GRAPHITE},
year = {2003},
pages = {119--127},
}
@article{Lipman:2010:BD,
author = "Yaron Lipman and Raif Rustamov and Thomas Funkhouser",
title = "Biharmonic Distance",
journal = j-TOG,
year = "2010",
volume = "29",
number = "3"
}
@article{bremer04a,
author = "P.-T.~Bremer and H.~Edelsbrunner and B.~Hamann and V.~Pascucci",
title = "A topological hierarchy for functions on triangulated surfaces",
year = "2004",
journal = "IEEE TVCG",
volume = 10,
number = 4,
pages = "385 -- 396",
}
@article{mitchell1987,
author = {Mitchell, Joseph S. B. and Mount, David M. and Papadimitriou, Christos H.},
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@inproceedings{Carr2004Isosurfaces,
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title = {Simplifying Flexible Isosurfaces Using Local Geometric Measures},
booktitle = {Proc.\ Visualization},
year = {2004},
isbn = {0-7803-8788-0},
pages = {497--504},
}
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author = "R.~Forman",
title = {{M}orse Theory for Cell-Complexes},
journal = {Adv. in Math.},
year = {1998},
volume = {134},
pages = {90--145},
number = {1},
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doi = {10.1145/1978942.1979034},
acmid = {1979034},
keywords = {force feedback, input device, posture, robot}, }
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author = "Naoki Numaguchi and Atsushi Nakazawa and Takaaki Shiratori and Jessica K. Hodgins",
title = "A Puppet Interface for Retrieval of Motion Capture Data",
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year = "2011",
}
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numpages = {8},
url = {http://doi.acm.org/10.1145/985692.985774},
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keywords = {children, digital manipulative, education, learning, modular robotics, programming by demonstration, tangible interface, toy},
}
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year = {2004},
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numpages = {8},
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author = {Barakonyi, Istv\'{a}n and Schmalstieg, Dieter},
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author = {Wang, Robert Y. and Popovi\'{c}, Jovan},
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author = {Sageev Oore and Demetri Terzopoulos and Geoffrey Hinton},
title = {A Desktop Input Device and Interface for Interactive 3{D} Character Animation},
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}
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year = {2009},
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abstract = {This paper develops the concept of mediators: virtual
interfaces with haptic feedback for teleoperation. Our
approach is to replace physical operator interfaces by
fully parameterizable adaptive virtual interfaces.
Mediators open new possibilities for multimodal feedback
for control interfaces. We apply mediators in the context
of teleoperation of robots. The implemented prototype
shows the feasibility of using virtual haptic interfaces
to drive robots remotely},
affiliation = {EPFL},
author = {Gutierrez, M. and Ott, R. and Thalmann, D. and Vexo, F.},
booktitle = {Proc.\ {IEEE} {I}nternational {W}orkshop on {R}obot and {H}uman
{I}nteractive {C}ommunication ({RO}-{MAN} 2004)},
details = {http://infoscience.epfl.ch/record/98982},
documenturl = {http://infoscience.epfl.ch/record/98982/files/Gutierrez_and_al_ROMAN_04.pdf},
extra-id = {000227715300087},
note = {Virtual Reality Lab., Swiss Fed. Inst. of Technol. Lausanne, Switzerland},
keywords = {feedback; haptic interfaces; tele robotics},
oai-id = {oai:infoscience.epfl.ch:98982},
oai-set = {conf},
pages = {515--520},
review = {REVIEWED},
status = {PUBLISHED},
title = {Mediators: virtual haptic interfaces for tele-operated robots},
unit = {VRLAB},
year = {2004},
}
@InProceedings{Gutierrez2004b,
abstract = {We have designed a mobile -PDA-based- interface for
real-time control of virtual characters in multiuser
semi-immersive virtual environments - using a large
rear-projection screen. The proof-of-concept
implementation we present shows the potential of handheld
devices as powerful interfaces to virtual reality
applications. This technique eliminates the display of
floating menus and other widgets over the simulation
screen. A brief discussion on the advantages and
disadvantages of using a handheld for 3D interaction is
presented as well},
affiliation = {EPFL},
author = {Gutierrez, M. and Vexo, F. and Thalmann, D.},
booktitle = {Proc.\ {IEEE} {V}irtual {R}eality {C}onference},
details = {http://infoscience.epfl.ch/record/98979},
documenturl = {http://infoscience.epfl.ch/record/98979/files/Gutierrez_Vexo_Thalmann_VR_04.pdf},
doi = {10.1109/VR.2004.1310065},
extra-id = {000189492200017},
keywords = {computer animation; groupware; interactive systems;
mobile handsets; notebook computers; real-time systems;
virtual reality},
oai-id = {oai:infoscience.epfl.ch:98979},
oai-set = {conf},
pages = {125--132},
review = {REVIEWED},
status = {PUBLISHED},
title = {The mobile animator: interactive character animation in
collaborative virtual environments},
unit = {VRLAB},
year = 2004
}
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pages={2057--2065},
year={2012},
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author = {Lin, Juncong and Igarashi, Takeo and Mitani, Jun and Saul, Greg},
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year = {2010},
isbn = {978-3-905674-25-5},
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}
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author={Juncong Lin and Igarashi, T. and Mitani, J. and Minghong Liao and Ying He},
journal={IEEE TVCG},
title={A Sketching Interface for Sitting Pose Design in the Virtual Environment},
year={2012},
volume={18},
number={11},
pages={1979--1991},
keywords={Bones;Educational institutions;Equations;Joints;Mathematical model;Switches;Three dimensional displays;genetic algorithms;graphical user interfaces;graphics processing units;image reconstruction;nonlinear programming;pose estimation;virtual reality;2D stick figure;3D human character;3D pose reconstruction;GPU implementation;character body structure;character pose design;computer graphics authoring;genetic algorithm;graphics processing unit;nonlinear optimization problem;quasi-Newton solver;sitting pose design;sketching interface;virtual environment;GPU;Sketching interface;genetic algorithm;quasi-Newton solver;sitting pose design;virtual environment;},
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title = {Interactive control for physically-based animation},
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acmid = {344876},
keywords = {physically based animation, user interfaces},
}
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author = "Luca Ballan and Aparna Taneja and Juergen Gall and Luc Van Gool and Marc Pollefeys",
title = "Motion Capture of Hands in Action using Discriminative Salient Points",
booktitle = "Proc.\ ECCV",
year = "2012",
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title = {{QUMARION}},
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author={Pai, D.K. and VanDerLoo, E.W. and Sadhukhan, S. and Kry, P.G.},
booktitle={Eurohaptics Conference, 2005 and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems, 2005. World Haptics 2005. First Joint},
title={The Tango: a tangible tangoreceptive whole-hand human interface},
year={2005},
pages={141-147},
keywords={haptic interfaces;human computer interaction;interactive devices;3D virtual environment;Tango device;passive haptic interface;pressure sensitive skin measures;tangible tangoreceptive whole-hand human interface;Haptic interfaces;Humans;Teleoperators;Virtual environment},
doi={10.1109/WHC.2005.136},}
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year = {2012},
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pages = {423--434},
numpages = {12},
url = {http://doi.acm.org/10.1145/2380116.2380170},
doi = {10.1145/2380116.2380170},
acmid = {2380170},
publisher = {ACM},
address = {New York, NY, USA},
keywords = {animation, object tracking, tangible user interface},
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keywords = {Polhemus tracker, gesture input, input devices, integrality, interaction techniques, perceptual space, separability},
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