DocumentCode :
1365483
Title :
Interactive Multiscale Tensor Reconstruction for Multiresolution Volume Visualization
Author :
Suter, Susanne K. ; Guitián, José A Iglesias ; Marton, Fabio ; Agus, Marco ; Elsener, Andreas ; Zollikofer, Christoph P E ; Gopi, M. ; Gobbetti, Enrico ; Pajarola, Renato
Author_Institution :
Univ. of Zurich, Zurich, Switzerland
Volume :
17
Issue :
12
fYear :
2011
Firstpage :
2135
Lastpage :
2143
Abstract :
Large scale and structurally complex volume datasets from high-resolution 3D imaging devices or computational simulations pose a number of technical challenges for interactive visual analysis. In this paper, we present the first integration of a multiscale volume representation based on tensor approximation within a GPU-accelerated out-of-core multiresolution rendering framework. Specific contributions include (a) a hierarchical brick-tensor decomposition approach for pre-processing large volume data, (b) a GPU accelerated tensor reconstruction implementation exploiting CUDA capabilities, and (c) an effective tensor-specific quantization strategy for reducing data transfer bandwidth and out-of-core memory footprint. Our multiscale representation allows for the extraction, analysis and display of structural features at variable spatial scales, while adaptive level-of-detail rendering methods make it possible to interactively explore large datasets within a constrained memory footprint. The quality and performance of our prototype system is evaluated on large structurally complex datasets, including gigabyte-sized micro-tomographic volumes.
Keywords :
computer graphic equipment; coprocessors; data visualisation; interactive systems; natural sciences computing; rendering (computer graphics); CUDA; GPU accelerated out-of-core multiresolution rendering framework; GPU accelerated tensor reconstruction; computational simulations; constrained memory footprint; data transfer bandwidth; gigabyte sized microtomographic volumes; hierarchical brick tensor decomposition approach; high resolution 3D imaging devices; interactive multiscale tensor reconstruction; interactive visual analysis; multiresolution volume visualization; out-of-core memory footprint; tensor approximation; Approximation methods; Graphics processing unit; Instruction sets; Quantization; Rendering (computer graphics); Tensile stress; GPU/CUDA; interactive volume visualization; multiresolution rendering.; multiscale; tensor reconstruction; Algorithms; Animals; Computer Graphics; Computer Simulation; Databases, Factual; Hominidae; Imaging, Three-Dimensional; Lizards; Models, Anatomic; Molar; X-Ray Microtomography;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2011.214
Filename :
6064978
Link To Document :
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