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Terzopoulos, D., Metaxas, D.: Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Trans. Pattern Analysis and Machine Intelligence 13 (1991) 703--714

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Analyzing the Deformation of the Left Ventricle of the.. - BARDINET, COHEN, AYACHE (1996)   (1 citation)  (Correct)

....small number of parameters needed to represent a shape. However, if these models give a good global approximation to a surface, the set of shapes described by superquadrics is too limited to approximate precisely complex surfaces. To take into account local deformations, Terzopoulos and Metaxas [42] couple superquadrics with a deformable model. In [15] an implicit approach is used to rene the initial approximation. We rene our superquadric model using a parametric deformation. More precisely, for a given set of 3D points, we rst t 3D data with a superellipsoid, and then rene this crude ....

D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703714, July 1991.


A Taxonomy and Evaluation of Dense Two-Frame Stereo.. - Scharstein, Szeliski (2001)   (97 citations)  (Correct)

....the input images, or a cyclopian view in between some of the images. Other approaches, in particular multi view stereo methods, use multi valued [113] voxel based [101, 67, 34, 33, 24] or layer based [125, 5] representations. Still other approaches use full 3D models such as deformable models [120, 121], triangulated meshes [43] or level set methods [38] Since our goal is to compare a large number of methods within one common framework, we have chosen to focus on techniques that produce a univalued disparity map d(x, y) as their output. Central to such methods is the concept of a disparity ....

.... 34, 33, 24] Another way to represent a scene with more complexity is to use multiple layers, each of which can be represented by a plane plus residual parallax [5, 14, 117] Finally, deformable surfaces of various kinds have also been used to perform 3D shape reconstruction from multiple images [120, 121, 43, 38]. 3.6. Summary of methods Table 1 gives a summary of some representative stereo matching algorithms and their corresponding taxonomy, i.e. the matching cost, aggregation, and optimization techniques used by each. The methods are grouped to contrast different matching costs (top) aggregation ....

D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE TPAMI, 13(7):703--714, 1991.


Approximating Digital 3-D Shapes by Rational Gaussian.. - Jackowski, Satter..   (Correct)

....function that depends on the distance of shape points to the surface to be recovered. The surface is then determined by minimizing the energy function. Because of the limited number of free parameters of superquadrics, such surfaces can only reproduce global shape details. Terzopoulos and Metaxas [48] combine membrane splines with superquadrics to create both local and global shape details. To capture local details in a recovered surface, Bardinet et al. 1] first fit a superquadric surface to the data and then carry out a free form deformation of the surface. Cohen and Cohen [10] and Hanson ....

D. Terzopoulos and D. Metaxas, Dynamic 3-D models with local and global deformations: Deformable superquadrics, IEEE Trans. Pattern Analysis and Machine Intelligence, vol. 13, no. 7, 1991, 703 713.


Using Geometric Constraints - Sminchisescu, Metaxas, Dickinson   Self-citation (Metaxas)   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with Local and Global deformations: Deformable Superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 1991.


Sparse Finite Element Level-Sets for Anisotropic Boundary.. - Martin Weber Andrew (2005)   (Correct)

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Terzopoulos, D., Metaxas, D.: Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Trans. Pattern Analysis and Machine Intelligence 13 (1991) 703--714


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D. Terzopoulos and D. Metaxas. Dynamic 3d models with local and global deformations: Deformable superquadrics. IEEE Trans. on Pattern Analysis and Machine Intelligence, 13:703--714, 1991.


A Feature-Based, Robust, Hierarchical Algorithm for.. - Can, Stewart.. (2001)   (1 citation)  (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3d models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703-714, 1991.


Segmentation of Medical Images under Topological Constraints - Segonne (2005)   (Correct)

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D. Terzopoulos and D.N. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703--714, 1991.


Unknown - The Case Of   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D Models with Local and Global Deformations: Deformable Superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703--714, 1991.


Shape-Based Indexing for Content-Based Medical Image.. - Zhang Dickinson Sclaroff   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3-d models with local and global deformations: Deformable superquadrics. IEEE Trans. Pattern Analysis and Machine Intelligence, 13(7):703--714, July 1991.


Multiscale 3D Shape Analysis using Spherical - Wavelets Delphine Nain (2005)   (Correct)

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Terzopoulos, D., Metaxas, D.: Dunamic 3d models with local and global deformations: Deformable superquadrics. IEEE Trans. Pat. Anal. Mach. Intell. 13 (1991)


Bridging the Representation Gap between Models and Exemplars - Keselman, Dickinson (2001)   (2 citations)  (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703--714, 1991.


Object Representation and Recognition - Sven Dickinson Center   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703--714, 1991.


Shape-Based Indexing in a Medical Image Database - Wei Zhang Department (1998)   (3 citations)  (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3-d models with local and global deformations: Deformable superquadrics. 13(7):703--714, July 1991.


Surface Recovery from 3D Point Data Using a Combined.. - Savadjiev, Ferrie..   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: deformable superquadrics. IEEE Trans. on Pattern Analysis and Machine Intelligence, Vol. 13, pages 703-714, 1991.


Representing and Recognizing Complete Set of Geons Using.. - Superquadrics Lin Zhou   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3d models with local and global deformations: Deformable superquadrics. IEEE Trans. Patt. Anal. Mach. Intell., (13):703--714, July 1991.


Global Optimization-Based Deformable Meshes for Surface Extraction .. - Tohka (2003)   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703 -- 714, July 1991.


Image Retrieval By Shape and Texture - Pala, Santini (1999)   (4 citations)  (Correct)

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D. Terzopoulos, D. Metaxas, Dynamic 3D models with local and global deformations: deformable superquadratics, IEEE Trans. Pattern Anal. Machine Intell. 13(7) (1991.


Global Optimization-Based Deformable Meshes for Surface Extraction .. - Tohka (2003)   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703 -- 714, July 1991.


g-HDAF Multiresolution Deformable Models For Shape .. - Kakadiaris.. (2002)   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703 -- 714, 1991.


A Model for Dynamic Shape and Its Applications - Che-Bin Liu And (2004)   (1 citation)  (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3d models with local and global deformations: deformable superquadrics. IEEE Trans. on PAMI, 13(7):703--714, 1991.


Implicit Meshes for Modeling and Reconstruction - Ilic, Fua   (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13:703--714, 1991.


A Feature-Based, Robust, Hierarchical Algorithm for.. - Can, Stewart.. (2001)   (1 citation)  (Correct)

No context found.

D. Terzopoulos and D. Metaxas. Dynamic 3d models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703-714, 1991.


Reconstructing Surfaces By Volumetric Regularization Using Radial.. - And   (Correct)

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Terzopoulos, D. and D. Metaxas. \Dynamic 3D Models with Local and Global Deformations: Deformable Superquadrics", IEEE Transactions on Pattern Analysis and Machine Intelligence, July 1991, 13(7).


A Hybrid Hyperquadric Model for 2-D and 3-D Data Fitting - Cohen, Cohen (1994)   (8 citations)  (Correct)

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D. Terzopoulos and D. Metaxas. Dynamic 3-D models with local and global deformations: Deformable superquadrics. IEEE Transactions on Pattern Analysis and Machine Intelligence, 13(7):703--714, 1991.

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