DocumentCode
1866394
Title
Optimal regular volume sampling
Author
Theussl, T. ; Moller, Torsten ; Groller, Meister Eduard
Author_Institution
Inst. of Comput. Graphics & Algorithms, Technische Univ. Wien, Vienna, Austria
fYear
2001
fDate
21-26 Oct. 2001
Firstpage
91
Lastpage
546
Abstract
The classification of volumetric data sets as well as their rendering algorithms are typically based on the representation of the underlying grid. Grid structures based on a Cartesian lattice are the de-facto standard for regular representations of volumetric data. In this paper we introduce a more general concept of regular grids for the representation of volumetric data. We demonstrate that a specific type of regular lattice-the so-called body-centered cubic-is able to represent the same data set as a Cartesian grid to the same accuracy but with 29.3% fewer samples. This speeds up traditional volume rendering algorithms by the same ratio, which we demonstrate by adopting a splatting implementation for these new lattices. We investigate different filtering methods required for computing the normals on this lattice. The lattice representation results also in lossless compression ratios that are better than previously reported. Although other regular grid structures achieve the same sample efficiency, the body-centered cubic is particularly easy to use. The only assumption necessary is that the underlying volume is isotropic and band-limited-an assumption that is valid for most practical data sets.
Keywords
rendering (computer graphics); sampling methods; Cartesian lattice; body-centered cubic; hexagonal sampling; rendering; splatting implementation; volumetric data; volumetric data sets; Computer graphics; Data visualization; Energy states; Image processing; Image sampling; Lattices; Physics; Sampling methods; Signal processing algorithms; Signal sampling;
fLanguage
English
Publisher
ieee
Conference_Titel
Visualization, 2001. VIS '01. Proceedings
Conference_Location
San Diego, CA, USA
Print_ISBN
0-7803-7201-8
Type
conf
DOI
10.1109/VISUAL.2001.964498
Filename
964498
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