Interactive Multiscale Tensor Reconstruction for Multiresolution Volume Visualization

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 appro...

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Veröffentlicht in:IEEE transactions on visualization and computer graphics 2011-12, Vol.17 (12), p.2135-2143
Hauptverfasser: Suter, S. K., Iglesias Guitian, Jose A., Marton, F., Agus, M., Elsener, A., Zollikofer, C. P. E., Gopi, M., Gobbetti, E., Pajarola, R.
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Sprache:eng
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Zusammenfassung: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.
ISSN:1077-2626
1941-0506
DOI:10.1109/TVCG.2011.214