11.8.4 Nonrigid, Deformable Motion Analysis and Tracking

Chapter Contents (Back)
The separation of deformable and nonrigid motion is arbitrary, mostly on the basis of what the author seems to be saying they are doing. Non-rigid motion. Motion, Nonrigid. Deformable Solids. Nonrigid Motion. See also Active Contours, Snakes or Deformable Curves. See also Snakes, Motion Tracking.

Kambhamettu, C., Goldgof, D.B., Terzopoulos, D., Huang, T.S.,
Nonrigid Motion Analysis,
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Huang, W.C., and Goldgof, D.B.,
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IEEE Abstract. IEEE Top Reference.
WWW Version. BibRef 9306
Earlier:
Adaptive-Size Physically-Based Models for Nonrigid Motion Analysis,
CVPR92(833-835).
IEEE Abstract. IEEE Top Reference. BibRef
And:
Nonrigid Motion Analysis Using Nonlinear Finite Element Modeling,
SPIE(2031), 1993, pp. 404-414. Physics Based Vision. BibRef

Huang, W.C., Goldgof, D.B., Tsap, L.V.,
Nonlinear Finite Element Methods for Nonrigid Motion Analysis,
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Huang, W.C., Goldgof, D.B.,
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Huang, W.C., Goldgof, D.B.,
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Tsap, L.V.[Leonid V.], Goldgof, D.B.[Dmitry B.], Sarkar, S.[Sudeep],
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Earlier:
Model-based nonrigid motion recovery from sequences of range images without point correspondences,
ICIP98(II: 218-222).
WWW Version. 9810 BibRef

Tsap, L.V.[Leonid V.], Goldgof, D.B.[Dmitry B.], and Sarkar, S.[Sudeep],
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IEEE Abstract. IEEE Top Reference.
WWW Version. 0008 BibRef
Earlier: CVPR98(728-734).
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Tsap, L.V.[Leonid V.], Goldgof, D.B.[Dmitry B.], Sarkar, S.[Sudeep],
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Tsap, L.V.[Leonid V.], Goldgof, D.B.[Dmitry B.], Sarkar, S.[Sudeep],
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Zhang, Y.[Yong], Goldgof, D.B.[Dmitry B.], Sarkar, S.[Sudeep], Tsap, L.V.[Leonid V.],
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IVC(25), No. 3, March 2007, pp. 262-273.
WWW Version. 0701 BibRef
Earlier:
Model-based Nonrigid Motion Analysis Using Natural Feature Adaptive Mesh,
ICPR00(Vol III: 831-835).
WWW Version.
HTML Version. 0009Sensitivity analysis; Physical modeling; Nonrigid motion; Elastic parameters BibRef

Shin, M.C.[Min C.], Balasubramanian, R.[Ramprasad], Goldgof, D.B.[Dmitry B.], Kim, C.[Carlos],
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Penna, M.A.[Michael A.],
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Chen, S.S.[Su-Shing], and Penna, M.A.[Michael A.],
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Penna, M.A.,
Non-rigid Motion Analysis: Isometric Motion,
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Mishra, S.K., Goldgof, D.B., Kambhamettu, C.,
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Chou, W.S., Chen, Y.C.,
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Beattie, R.S., Elder, S.C.,
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Chen, C.W., and Huang, T.S.[Thomas S.],
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Chen, S.S., Zhao, A.G.,
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Barron, J.L., Eagleson, R.,
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Nastar, C.[Chahab], Ayache, N.[Nicholas],
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IEEE Abstract. IEEE Top Reference.
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Earlier:
Time representation of deformations: Combining vibration modes and Fourier analysis,
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Nastar, C., and Ayache, N.J.,
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Nastar, C.,
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Lee, C.W., Hasegawa, O., Wongwarawipat, W., Dohi, H., Ishizuka, M.,
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Chaudhuri, S., and Chatterjee, S.,
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Chaudhuri, S., and Chatterjee, S.,
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WWW Version. 9704Time-varying 3-D shapes with a known cycle. Integrate apparent contours from different viewpoints. BibRef

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Aggarwal, J.K., Cai, Q., Liao, W., Sabata, B.,
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Kambhamettu, C., Goldgof, D.B.,
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CVGIP(60), No. 1, July 1994, pp. 26-43.
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Kambhamettu, C.[Chandra], Goldgof, D.B.[Dmitry B.], He, M.[Matthew], Laskov, P.[Pavel],
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Kambhamettu, C., Goldgof, D.B., He, M.,
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Laskov, P.[Pavel], Kambhamettu, C.[Chandra],
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Chapter on 3-D Object Description and Computation Techniques, Surfaces, Deformable, View Generation, Video Conferencing continues in
Nonrigid, Deformable Motion Tracking .


Last update:May 8, 2008 at 19:01:47