DocumentCode :
1505104
Title :
Mapping High-Fidelity Volume Rendering for Medical Imaging to CPU, GPU and Many-Core Architectures
Author :
Smelyanskiy, Mikhail ; Holmes, David ; Chhugani, Jatin ; Larson, Alan ; Carmean, Douglas M. ; Hanson, Dennis ; Dubey, Pradeep ; Augustine, Kurt ; Kim, Daehyun ; Kyker, Alan ; Lee, Victor W. ; Nguyen, Anthony D. ; Seiler, Larry ; Robb, Richard
Author_Institution :
Intel Corp., Santa Clara, CA, USA
Volume :
15
Issue :
6
fYear :
2009
Firstpage :
1563
Lastpage :
1570
Abstract :
Medical volumetric imaging requires high fidelity, high performance rendering algorithms. We motivate and analyze new volumetric rendering algorithms that are suited to modern parallel processing architectures. First, we describe the three major categories of volume rendering algorithms and confirm through an imaging scientist-guided evaluation that ray-casting is the most acceptable. We describe a thread- and data-parallel implementation of ray-casting that makes it amenable to key architectural trends of three modern commodity parallel architectures: multi-core, GPU, and an upcoming many-core Intelreg architecture code-named Larrabee. We achieve more than an order of magnitude performance improvement on a number of large 3D medical datasets. We further describe a data compression scheme that significantly reduces data-transfer overhead. This allows our approach to scale well to large numbers of Larrabee cores.
Keywords :
medical image processing; parallel processing; rendering (computer graphics); CPU; GPU; Larrabee cores; data compression scheme; high-fidelity volume rendering; many-core Intel architecture code; medical volumetric imaging; ray-casting; Biomedical imaging; Costs; Data visualization; Engines; Graphics; Hardware; Medical diagnostic imaging; Parallel architectures; Parallel processing; Rendering (computer graphics); GPGPU; Graphics Architecture; Many-core Computing; Medical Imaging; Parallel Processing; Volume Compositing; Algorithms; Computer Graphics; Databases, Factual; Diagnostic Imaging; Humans; Image Processing, Computer-Assisted; Radiography, Abdominal; Tomography, X-Ray Computed;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2009.164
Filename :
5290774
Link To Document :
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