Grimson, W.E.L., and
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Discontinuity Detection for Visual Surface Reconstruction,
CVGIP(30), No. 3, June 1985, pp. 316-330.
WWW Version. (Bell Labs work) An algorithm to detect disparity discontinuities
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BibRef
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Terzopoulos, D.[Demetri],
The Computation of Visible-Surface Representations,
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IEEE Abstract. IEEE Top Reference.
WWW Version.
BibRef
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Terzopoulos, D.[Demetri],
Multilevel Computational Processes for Visual Surface Reconstruction,
CVGIP(24), No. 1, 1983, pp. 52-96.
BibRef
8300
Earlier:
Multiresolution Computation of Visible-Surface Representations,
Ph.D.Thesis (MIT EECS), January 1984.
BibRef
And:
The Role of Constraints and Discontinuities in
Visible Surface Reconstruction,
IJCAI83(1019-1022).
Relaxation. This paper uses the multi-grid relaxation technique given earlier
to derive a technique for surface reconstruction that considers
discontinuities.
See also Multiresolution Algorithms in Computational Vision.
BibRef
Terzopoulos, D.[Demetri],
Computing Visible Surface Representations,
MIT AI Memo-800, March 1985.
WWW Version.
BibRef
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Terzopoulos, D.[Demetri],
Multi-Level Reconstruction of Visual Surfaces: Variational Principles
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MIT AI Memo-671, April 1982.
WWW Version.
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Terzopoulos, D.,
Efficient Multiresolution Algorithms for Computing Lightness,
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AAAI-84(314-317).
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Vasilescu, M.A.O., and
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Adaptive Meshes and Shells: Irregular Triangulation,
Discontinuities, and Hierarchical Subdivisions,
CVPR92(829-832).
IEEE Abstract. IEEE Top Reference. Follow-up to the following paper.
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9200
Terzopoulos, D., and
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Sampling and Reconstruction with Adaptive Meshes,
CVPR91(70-75).
IEEE Abstract. IEEE Top Reference. Cut the surface at the detected edges.
BibRef
9100
Blake, A.,
Comparison of the Efficiency of Deterministic and
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PAMI(11), No. 1, January 1989, pp. 2-12.
IEEE Abstract. IEEE Top Reference.
WWW Version.
BibRef
8901
Earlier:
Reconstructing a Visible Surface,
AAAI-84(23-26).
Graduated nonconvexity is better than
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BibRef
Blake, A., and
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Visual Reconstruction,
Cambridge:
MIT Press1987.
ISBN 0262022710.
PDF Version.
A complete discussion of continuity constraints.
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BibRef
8700
Blake, A.,
Zisserman, A.,
Localizing Discontinuities Using Weak Continuity Constraints,
PRL(6), 1987, pp. 51-59.
BibRef
8700
Blake, A., and
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Invariant Surface Reconstruction Using Weak Continuity Constraints,
CVPR86(62-67).
Explicitly include discontinuities.
BibRef
8600
Yi, J.H.,
Chelberg, D.M.,
Discontinuity-Preserving and Viewpoint Invariant Reconstruction of
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IEEE Abstract. IEEE Top Reference.
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Regularization.
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Jou, J.Y.[Jinn-Yeu], and
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Improved Initial Approximation and Intensity-Guided Discontinuity Detection
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CVGIP(47), No. 3, September 1989, pp. 292-326.
WWW Version.
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8909
Earlier:
Improving Visible-Surface Reconstruction,
CVPR88(138-143).
IEEE Abstract. IEEE Top Reference. By using edges it is possible to improve the speed and accuracy
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March, R.,
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Qian, W.,
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Bayesian Image Restoration:
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IEEE Abstract. IEEE Top Reference.
WWW Version.
0401
See also On Some Bayesian/Regularization Methods for Image Restoration.
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Pedersini, F.[Federico],
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0003
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ICIP98(II: 963-966).
WWW Version.
9810
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Earlier:
Combined Motion and Edge Analysis for a Layer-Based
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ICIP96(I: 921-924).
WWW Version.
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Earlier:
Synthesis of virtual views using non-Lambertian reflectivity models and
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ICIP95(II: 358-361).
WWW Version.
9510
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0108
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Surface Reconstruction with Multiresolution Discontinuity Analysis,
ECCV98(II: 202).
WWW Version.
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Surfaces with Occlusions from Layered Stereo,
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IEEE Abstract. IEEE Top Reference.
0407
BibRef
Earlier:
CVPR03(I: 710-717).
IEEE Abstract. IEEE Top Reference.
WWW Version.
0307Estimate scene structure as a set of smooth surface patches. The
disparities within each patch are modeled by a spline, while the
extent of each patch is represented by a pixelwise labeling of the
source images. Disparities and extents are alternately estimated in an
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0512
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Globally optimal segmentation of interacting surfaces with geometric
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0408Surfaces in CT images.
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Shimizu, M.[Masao],
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WWW Version.
0711
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Fanany, M.I.[Mohamad Ivan],
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IbPRIA07(II: 380-387).
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0706
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A Neural Network for Simultaneously Reconstructing Transparent and
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ICIAR06(II: 157-168).
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0610
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0606
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9704
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9410
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9208
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9208
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Chapter on 3-D Object Description and Computation Techniques, Surfaces, Deformable, View Generation, Video Conferencing continues in
Fitting Curved Surfaces .