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From single or multiple view range data, use simulated electical charge
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3D Object Representation Using Parametric Geons,
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Munck-Fairwood, R.C.,
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Earlier:
BMVC96(Features, Segmentation).
9608
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And:
DAINo. 817, July 1996.
BibRef
EdinburghUniversity of Edinburgh
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USC Computer Vision
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0711A deformable template model.
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Earlier:
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Earlier:
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Huang, R.[Runzhen],
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BMVC04(xx-yy).
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And:
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AMDO04(62-75).
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BibRef
Donamukkala, R.,
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IEEE DOI may work or IEEE-CS DOI may work.
0508
BibRef
Earlier: A2, A3, A1, A4:
Parts-based 3D object classification,
CVPR04(II: 82-89).
IEEE Abstract. IEEE Top Reference.
0408
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Svensson, S.,
Sanniti di Baja, G.,
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CVPR01(I:850-855).
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01103d Model decomposition.
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BMVC01(Poster Session 1).
HTML Version. ETH Zurich
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de Vries, G.,
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Scale-adaptive Landmark Detection, Classification and Size Estimation
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ICPR00(Vol III: 1014-1017).
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0009Gradient Square Tensor, based on rods, plates and surfaces.
Medical images.
BibRef
Bueno, G.,
Nikou, C.,
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Cutzu, F.[Florin],
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CVPR00(II: 95-100).
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0005Segmented 3-D model
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Borges, D.L.,
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BMVC93(279-287).
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Edinburghrange data segmentation, articulated objects
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Lee, S.H.[Sun-Ho],
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Hauck, A.,
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9704Human and animal descriptions, texture and color.
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Ashbrook, A.P.,
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Constructing Models of Articulating Objects: Range Data Partitioning,
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And:
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EdinburghRegister the range data from several viewpoints after segmenting
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Rom, H.[Hillel], and
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ARPA94(II:1505-1512).
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9400
And:
ICPR94(A:629-632).
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Burns, J.B.[J. Brian],
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ARPA94(II:1281-1286).
Recognition by Parts. Teleos Research.
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Bennamoun, M.,
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ICIP94(III: 513-517).
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Paulus, D.W.R.[Dietrich W. R.],
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Object-oriented volume segmentation,
CAIP93(669-673).
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9309
BibRef
Biederman, I.[Irving],
Cooper, E.E.[Eric E.],
Hummel, J.E.[John E.],
Fiser, J.[Jozsef],
Geon Theory as an Account of Shape Recognition in Mind, Brain and
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9309
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Chen, L.H.,
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Part Segmentation for Object Recognition,
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Walker, N.[Nicholas],
Using neural networks to learn shape decomposition by successive
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9004
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Aubry, S.[Stephane], and
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CRA89(196-201).
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Pentland, A.P.,
Recognition by Parts,
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Adelfeld, B.,
Automatic 3D Reconstruction from 2D geometric Part Descriptions,
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Hebert, M.,
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Turner, K.J.,
Computer Perception of Curved Objects Using a Television Camera,
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Chapter on 3-D Object Description and Computation Techniques, Surfaces, Deformable, View Generation, Video Conferencing continues in
Descriptions Based on Relational Network Structures .