DocumentCode :
2071175
Title :
Compression of isosurfaces for structured volumes with context modelling
Author :
Saupe, Dietmar ; Kuska, Jens-Peer
Author_Institution :
Konstanz Univ., Germany
fYear :
2002
fDate :
2002
Firstpage :
384
Lastpage :
390
Abstract :
In many applications surfaces with a large number of primitives occur. Geometry compression reduces storage space and transmission time for such models. A special case is given by polygonal isosurfaces generated from gridded volume data. However most current state-of-the-art geometry compression systems do not capitalize on the structure that is characteristic of such isosurfaces, namely that the surfaces are defined by a set of vertices on edges of the grid. In a previous paper we proposed a compression method for isosurfaces that exploits this feature. In this paper we use the same coding approach, however, including context models for the encoding of the symbol streams. We report improved compression ratios for complex isosurfaces from a CT scan of a human head Our coder outperformed state-of-the-art general purpose geometry compression methods. We also report results obtained by two predictive coding methods based on least squares function fitting and a surface relaxation algorithm.
Keywords :
computational geometry; computerised tomography; data compression; data visualisation; image coding; least squares approximations; relaxation theory; CT scan; complex isosurfaces; compression ratios; context models; encoding; geometry compression; gridded volume data; human head; least squares function fitting; polygonal isosurfaces; predictive coding; surface relaxation algorithm; symbol streams; Computed tomography; Context modeling; Encoding; Geometry; Humans; Isosurfaces; Mesh generation; Predictive coding; Solid modeling; Surface fitting;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
3D Data Processing Visualization and Transmission, 2002. Proceedings. First International Symposium on
Print_ISBN :
0-7695-1521-4
Type :
conf
DOI :
10.1109/TDPVT.2002.1024088
Filename :
1024088
Link To Document :
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