![]() ![]() ![]() | ![]() |
![]() ![]() ![]() ![]() ![]() |
![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() |
Note: Links lead to the DBLP on the Web. David A. Forsyth 26 David A. Forsyth: Shape from Texture without Boundaries. ECCV (3) 2002 : 225-239 25 P. Duygulu , Kobus Barnard , J. F. G. de Freitas , David A. Forsyth: Object Recognition as Machine Translation: Learning a Lexicon for a Fixed Image Vocabulary. ECCV (4) 2002 : 97-112 24 Kobus Barnard , David A. Forsyth: Exploiting image semantics for picture libraries. JCDL 2001 : 469 23 David A. Forsyth, John A. Haddon , Sergey Ioffe : The Joy of Sampling. International Journal of Computer Vision 41 (1/2): 109-134 (2001) 22 Sergey Ioffe , David A. Forsyth: Probabilistic Methods for Finding People. International Journal of Computer Vision 43 (1): 45-68 (2001) 21 Oliver D. King , David A. Forsyth: How Does CONDENSATION Behave with a Finite Number of Samples? ECCV (1) 2000 : 695-709 20 Stephen Chenney , David A. Forsyth: Sampling plausible solutions to multi-body constraint problems. SIGGRAPH 2000 : 219-228 19 Sergey Ioffe , David A. Forsyth: Finding People by Sampling. ICCV 1999 : 1092-1097 18 David A. Forsyth, Sergey Ioffe , John A. Haddon : Bayesian Structure from Motion. ICCV 1999 : 660-665 17 David A. Forsyth, Joseph L. Mundy : Introduction. Shape, Contour and Grouping in Computer Vision 1999 : 3-8 16 David A. Forsyth, John A. Haddon , Sergey Ioffe : Finding Objects by Grouping Primitives. Shape, Contour and Grouping in Computer Vision 1999 : 302-318 15 David A. Forsyth: An Empirical-Statistical Agenda for Recognition. Shape, Contour and Grouping in Computer Vision 1999 : 9-21 14 John A. Haddon , David A. Forsyth: Shape Representations from Shading Primitives. ECCV (2) 1998 : 415-431 13 John A. Haddon , David A. Forsyth: Shading Primitives: Finding Folds and Shallow Grooves. ICCV 1998 : 236-241 12 Stephen Chenney , Jeffrey Ichnowski , David A. Forsyth: Efficient Dynamics Modeling for VRML and Java. VRML 1998 : 15-24 11 Stephen Chenney , David A. Forsyth: View-Dependent Culling of Dynamic Systems in Virtual Environments. SI3D 1997 : 55-58 10 David A. Forsyth, Jitendra Malik , Thomas K. Leung , Chris Bregler , Chad Carson , Hayit Greenspan , Margaret M. Fleck : Finding Pictures of Objects in Large Collections of Images. Data Processing Clinic 1996 : 0- 9 Margaret M. Fleck , David A. Forsyth, Chris Bregler : Finding Naked People. ECCV (2) 1996 : 593-602 8 David A. Forsyth, Jitendra Malik , Margaret M. Fleck , Hayit Greenspan , Thomas K. Leung , Serge Belongie , Chad Carson , Chris Bregler : Finding Pictures of Objects in Large Collections of Images. Object Representation in Computer Vision 1996 : 335-360 7 Joseph L. Mundy , Rupert W. Curwen , Jane Liu , Charlie Rothwell , Andrew Zisserman , David A. Forsyth: MORSE: An Architecture for 3D Object Recognition Based on Invariants. ACCV 1995 : 425-434 6 Andrew Zisserman , Joseph L. Mundy , David A. Forsyth, Jane Liu , Nic Pillow , Charlie Rothwell , Sven Utcke : Class-Based Grouping in Perspective Images. ICCV 1995 : 183-188 5 Andrew Zisserman , David A. Forsyth, Joseph L. Mundy , Charlie Rothwell , Jane Liu , Nic Pillow : 3D Object Recognition Using Invariance. Artificial Intelligence 78 (1-2): 239-288 (1995) 4 David A. Forsyth, Andrew Zisserman , Jitendra Malik : Distinctive Representations for the Recognition of Curved Surfaces Using Outlines and Markings. Object Representation in Computer Vision 1994 : 89-99 3 David A. Forsyth, Joseph L. Mundy , Andrew Zisserman , Charlie Rothwell : Recognising rotationally symmetric surfaces from their outlines. ECCV 1992 : 639-647 2 Charlie Rothwell , Andrew Zisserman , David A. Forsyth, Joseph L. Mundy : Canonical Frames for Planar Object Recognition. ECCV 1992 : 757-772 1 David A. Forsyth, Joseph L. Mundy , Andrew Zisserman , Christopher M. Brown : Projectively Invariant Representations Using Implicit Algebraic Curves. ECCV 1990 : 427-436 ![]() DiSC'02 © 2003 Association for Computing Machinery |