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0105Learn shape models from 2-D contour points. Cluster shapes and reject outliers.
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0209I.e. assembling pottery. Multiscale contour analysis.
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0301Use length and curvature. combine curve segments and closed curve.
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0401
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0403Get a short list of candidates with template match.
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0509Broken art work -- frescos.
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0605
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0601
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PDF Version.
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0601
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0604
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ECCV02(III: 48 ff.).
HTML Version.
PDF Version.
0205Shape; Variational; Registration; Missing Part; Inpainting
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0606
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0609Edge continuity; Contour matching
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0607
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0705Stand-alone vision System; Fuzzy; Pose descriptors; Sensors; State machine
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0803Shape; Segmentation; Spectral; Spatial; Classification
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0310
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0804Jigsaw puzzle solver; Edge matching; Piece classification;
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0706
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0706
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Parikh, D.[Devi],
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0711
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And:
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0710
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And:
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IEEE DOI may work or IEEE-CS DOI may work.
0706
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0702Use of local features and matching. Reassemble broken objects.
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0610
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0610
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Ivaldi, W.[William],
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0610
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And:
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0609
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Xiang, S.M.[Shi-Ming],
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ACCV06(II:489-498).
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0601
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Forssen, P.E.[Per-Erik],
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0505
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Ukovich, A.,
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ICIP05(III: 93-96).
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0512
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Bhowmick, P.,
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0512
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Wang, Y.[Yue],
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IEEE DOI may work or IEEE-CS DOI may work.
0505
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0505
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0606
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Grauman, K.[Kristen],
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Approximate Correspondences in High Dimensions,
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0606
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Darrell, T.J.[Trevor J.],
Pyramid Match Hashing:
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CVPR07(1-8).
IEEE DOI may work or IEEE-CS DOI may work.
0706
BibRef
Earlier:
The Pyramid Match Kernel: Discriminative Classification with Sets of
Image Features,
ICCV05(II: 1458-1465).
IEEE DOI may work or IEEE-CS DOI may work.
0510
BibRef
And:
CSAIL-2005-017, March 2005.
WWW Version.
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And: Version 2
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WWW Version.
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And:
Efficient Image Matching with Distributions of
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CVPR05(II: 627-634).
IEEE DOI may work or IEEE-CS DOI may work.
0507
BibRef
And:
MIT AIM-2004-027, November 22, 2004.
WWW Version.
0501
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Grauman, K.[Kristen],
Darrell, T.J.[Trevor J.],
Fast Contour Matching Using Approximate Earth Mover's Distance,
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0408
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And:
MIT AIM-2003-026, December 5, 2003.
WWW Version.
0501
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Super, B.J.[Boaz J.],
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0310
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Docking of Polygons Using Boundary Descriptor,
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0311
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Kang, K.[Kongbin],
Kong, W.X.[Wei-Xin],
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Velipasalar, S.[Senem],
Vote, E.L.[Eileen L.],
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Kimia, B.B.[Benjamin B.],
Laidlaw, D.H.[David H.],
Mumford, D.[David],
Bayesian pot-assembly from fragments as problems in perceptual-grouping
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ICPR02(III: 297-302).
IEEE DOI may work or IEEE-CS DOI may work.
0211The Shape Lab, Stitch project team.
Estimate the mathematical representation of the pot from sherds.
BibRef
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Kanade, T.,
Layered detection for multiple overlapping objects,
ICPR02(IV: 156-161).
IEEE DOI may work or IEEE-CS DOI may work.
0211
BibRef
Vilaplana, V.[Veronica],
Marques, F.[Ferran],
On Building a Hierarchical Region-Based Representation for Generic
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ICIP07(IV: 325-328).
IEEE DOI may work or IEEE-CS DOI may work.
0709
BibRef
Salerno, O.,
Pardas, M.,
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ICIP04(II: 929-932).
IEEE DOI may work or IEEE-CS DOI may work.
0505
BibRef
Marques, F.,
Pardas, M.,
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ICIP02(II: 829-832).
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0210
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CIAP01(478-483).
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0210
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On Solving 2D and 3D Puzzles Using Curve Matching,
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IEEE Abstract. IEEE Top Reference.
0110Match geometric features 3 at a time.
Jigsaw puzzles, broken pottery.
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On Representing Edge Structure for Model Matching,
CVPR01(I:1114-1119).
IEEE Abstract. IEEE Top Reference.
0110Include orientation and confidence.
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CVS01(236-255).
HTML Version.
0106
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Hori, K.[Kenta],
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CVPR99(II: 440-445).
IEEE Abstract. IEEE Top Reference.
WWW Version. Much like the jigsaw problem.
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9900
Sim, H.C.,
Damper, R.I.,
Recognition of planar objects in 3D space using a modified dynamic link
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ICIP98(III: 571-575).
IEEE DOI may work or IEEE-CS DOI may work.
9810
BibRef
And:
Recognition of Planar Objects in 3d Space,
BMVC98(xx-yy).
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Al-Khaiyat, M.,
Kamangar, F.,
Planar Curve Representation and Matching,
BMVC98(xx-yy).
BibRef
9800
Pedersini, F.,
Sarti, A.,
Tubaro, S.,
Robust Area Matching,
ICIP97(II: 704-707).
IEEE DOI may work or IEEE-CS DOI may work.
BibRef
9700
Krebs, B.,
Korn, B., and
Wahl, F.,
3D B-Spline Curve Matching for Model Based Object Recognition,
ICIP97(II: 716-719).
IEEE DOI may work or IEEE-CS DOI may work.
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9700
Aherne, F.J.,
Thacker, N.A.,
Rockett, P.I.,
Optimal Pairwise Geometric Histograms,
BMVC97(xx-yy).
HTML Version.
0209
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Ashbrook, A.P.,
Thacker, N.A.,
Rockett, P.I.,
Pairwise Geometric Histograms:
A Scalable Solution for the Recognition of 2D rigid Shape,
SCIA95(XX-YY). Uppsala, Sweden.
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9500
Ashbrook, A.P.,
Rockett, P.I.,
Thacker, N.A.,
Multiple Shape Recognition Using Pairwise Geometric
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ICIPA95(XX-YY). Edinburgh, UK.
BibRef
9500
Ashbrook, A.P.,
Thacker, N.A.,
Rockett, P.I., and
Brown, C.I.,
Robust Recogniton of Scaled Shapes Using Pairwise Geometric Histograms,
BMVC95(XX-YY). Birmingham, UK.
PDF Version.
9509
BibRef
Riocreux, P.A.,
Thacker, N.A.,
Yates, R.B.,
An Analysis of Pairwise Geometric Histograms for View-Based Object
Recognition,
BMVC94(xx-yy).
PDF Version.
9409
BibRef
Evans, A.C.[Alun C.],
Thacker, N.A.[Neil A.],
Mayhew, J.E.W.[John E. W.],
The Use of Geometric Histograms for Model-Based Object Recognition,
BMVC93(xx-yy).
PDF Version.
9309
BibRef
Ashbrook, A.P.,
Fisher, R.B.,
Robertson, C.,
Werghi, N.,
Finding Surface Correspondence for Object Recognition and
Registration Using Pairwise Geometric Histograms,
ECCV98(II: 674).
WWW Version.
BibRef
9800
Edinburgh
BibRef
Cui, Y.,
Weng, J.,
2D Segmentation from Fovea Images Based on Eigen-Subspace Learning,
SCV95(305-310).
IEEE Top Reference. Michigan State University.
Really seems to be fitting models to images -- 2D shapes (hands, sign
language).
BibRef
9500
Zhang, Y.N.[Yao-Nan],
Gerbrands, J.J.[Jan J.],
Matching of stereo curves: A closed form solution,
CIAP95(459-464).
WWW Version.
9509
BibRef
Kosiba, D.A.,
Devaux, P.M.,
Balasubramanian, S.,
Gandhi, T.L.,
Kasturi, R.,
An Automatic Jigsaw Puzzle Solver,
ICPR94(A:616-618).
IEEE DOI may work or IEEE-CS DOI may work.
BibRef
9400
Berger, M.O.,
How to Track Efficiently Piecewise Curved Contours with a View to
Reconstructing 3D Objects,
ICPR94(A:32-36).
IEEE DOI may work or IEEE-CS DOI may work.
BibRef
9400
Ming, J., and
Bhanu, B.,
A Multistrategy Learning Approach for
Target Model Recognition, Acquisition, and Refinement,
DARPA90(742-756).
Generate models of airplanes using a learning procedure. Models
are structural, but based on the contours. It appears to
use regions extracted from the scene.
BibRef
9000
Lomas, D.R.,
Model-Driven Object Recognition: Complexity Issues,
RBCV-TR-92-41, Toronto, 1992.
Survey of issues for a Master's thesis.
BibRef
9200
Messer, T.[Tilo],
Model-Based Synthesis of Vision Routines,
AMV Strategies921992, pp. 79-97.
Extract simple 2-D patterns by shape.
BibRef
9200
Montseny, E.,
Oliver, G.,
Sobrevilla, P.,
Multi-processor system for polygonal object recognition by means of
fuzzy algorithms,
ICPR92(IV:170-172).
IEEE DOI may work or IEEE-CS DOI may work.
9208
BibRef
Schreiber, I.,
Ben-Bassat, M.,
Polygonal object recognition,
ICPR90(I: 852-859).
IEEE DOI may work or IEEE-CS DOI may work.
9006
BibRef
Yamada, H.,
Kasvand, T.,
DP Matching Method for Recognition of Occluded, Reflective and
Transparent Objects with Unconstrained Background and Illumination,
ICPR86(95-98).
BibRef
8600
Suraqui, D.C.,
Study or a Model for Description Classification and Identification
of Bidimensional Contour Edges,
ICPR80(41-44).
BibRef
8000
Chapter on Registration, Matching and Recognition Using Points, Lines, Regions, Areas, Surfaces continues in
Matching, Affine Transformations .