| GOTSMAN C., GU X., SHEFFER A.: Fundamentals of Spherical Parameterization for 3D Meshes. ACM Transactions on Graphics 22, 3 (July 2003), 358--363. 9 |
.... 43, 70] numerical simulation of the mechanics of such surfaces (e.g. 26, 5] their resampling (e.g. 18, 45, 31] editing [42] or just plain decoration ( texture mapping ) 60] Most parameterization algorithms define a good parameterization as one which minimizes some energy functional [18, 37, 62, 29, 27, 64, 25, 55, 39]. The energy serves to encode measures such as low distortion [59, 60] conformality [33, 13, 47, 28] area preservation [13] or elastic energy [50] Others define the solution to satisfy barycentric coordinate conditions [19, 21] which take the original triangle shapes into account. A basic ....
C. Gotsman, X. Gu, and A. Sheffer, Fundamentals of Spherical Parameterization for 3D Meshes, ACM Transactions on Graphics, 22 (2003).
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GOTSMAN C., GU X., SHEFFER A.: Fundamentals of Spherical Parameterization for 3D Meshes. ACM Transactions on Graphics 22, 3 (July 2003), 358--363. 9
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GOTSMAN C., GU X., SHEFFER A.: Fundamentals of Spherical Parameterization for 3D Meshes. ACM Transactions on Graphics 22, 3 (July 2003), 358--363.The Eurographics Association 2005.
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Gotsman, C., Gu, X., and She#er, A., Fundamentals of spherical parameterization for 3D meshes. In: Proceedings of SIGGRAPH 2003. ACM Transaction on Graphics, Vol. 22--3 (2003).
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C Gotsman, X Gu, and A. She#er. Fundamentals of spherical parameterization for 3d meshes. ACM Transactions on Graphics, 22, 2003. 137
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