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Jin X, Li Y, Peng Q. General constrained deformation based on generalized metaballs. Computers& Graphics 2000;24(2):219--31.

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Free-Form Deformations via Sketching and Manipulating Scalar Fields - Hua, Qin (2003)   (1 citation)  (Correct)

....volumes. This technique allows a variety of deformable regions to be defined, and thus a broader range of shape deformations can be generated. However, the lattice space definition is time consuming and difficult. This technique requires a great deal of CPU time and memory. Later, Jin et al. [10] proposed a constrained local deformation technique based on generalized metaballs. Singh and Fiume [19] presented wires for interactive, geometric deformation. Crespin [6] presented a free form deformation technique with the use of deformation primitives. Note that, the combination of ....

X. Jin, Y. F. Li, and Q. Peng. General constrained deformations based on generalized metaballs. Computer & Graphics, 24(2):219--231, 2000.


Subdivision Interpolating Implicit Surfaces - Jin, Sun, Peng (2003)   Self-citation (Jin Peng)   (Correct)

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Jin X, Li Y, Peng Q. General constrained deformation based on generalized metaballs. Computers& Graphics 2000;24(2):219--31.


Convolution Surfaces for Line Skeletons with Polynomial.. - Xiaogang Jin Chiew-Lan (2001)   (1 citation)  Self-citation (Jin Peng)   (Correct)

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X. Jin, Y. Li and Q. Peng. "General Constrained Deformations Based on Generalized Metaballs." Computers &Graphics, 24(2):219-231 (2000).


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

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X. Jin, Y. Li, and Q. Peng. General Constrained Deformation Based on Generalized Metaballs. Computers and Graphics, 24(2):219--231, 2000.

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