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- W2029256820 abstract "AbstractAn isosurfaceextraction algorithmwhich can directlygeneratemultiresolution isosurfacesfrom volume data is in-troduced.It generateslow resolutionisosurfaces,with 4 to 25 times fewer triangles than that generatedby march-ing cubes algorithm, in comparable running times. By climbing from vertices (0-skeleton) to edges (1-skeleton) tofaces (2-skeleton), the algorithm constructs boxes which adapt to the geometry of the true isosurface. Unlike pre-vious adaptive marching cubes algorithms, the algorithm does not suffer from the gap-filling problem. Althoughthe triangles in the meshes may not be optimally reduced,it is much faster than postprocessingtriangle reductionalgorithms. Hence the coarse meshes it produces can be used as the initial starts for the mesh optimization, ifmesh optimality is the main concern.1. IntroductionStandard isosurface extraction algorithms 1 generate an un-wieldy number of triangles (half a million is common for abrain surface), making graphics and interactions unwieldy.This is inevitable with approacheswhich create triangles ly-ing within voxel-sizedcubes,even where a surfaceis smoothenoughto be wellapproximatedby muchlarger facets.Meshreduction algorithms" @default.
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- W2029256820 date "1998-08-01" @default.
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- W2029256820 title "Multiresolution Isosurface Extraction with Adaptive Skeleton Climbing" @default.
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