DocumentCode :
3338748
Title :
Strategies for accelerating forward and backprojection in list-mode OSEM PET reconstruction using GPUs
Author :
Dieckmann, William ; Thada, Shanthalaxmi ; Barker, W. Craig
Author_Institution :
PET Dept., Nat. Institutes Health, Bethesda, MD, USA
fYear :
2009
fDate :
Oct. 24 2009-Nov. 1 2009
Firstpage :
4110
Lastpage :
4113
Abstract :
Image reconstruction for the ECAT HRRT PET scanner with MOLAR is computationally demanding and requires a computer cluster for reasonable run times. Parallel computing using GPUs and CUDA offers a means to accelerate MOLAR. However, forward and backprojection operations present unique challenges that must be overcome to achieve acceptable speedup. In this study we implement GPU-accelerated versions of MOLAR´s forward projection, backprojection and algorithm update modules and compare their performance to CPU-only versions. During this implementation we optimized the GPU thread configurations for each of these modules separately, along with a hybrid forward-backprojection module that is used for algorithm updates. We also numerically evaluated the reconstruction results to assess the impact of floating-point to integer conversions dictated by the GPU architecture. We found forward projection to be 41 times faster than the CPU-only code, while backprojection was 20 times faster. We found the optimal thread configurations always assigned 64 threads to a thread block, but with different distributions across the nested indexing loops within each module. These results show that MOLAR´s forward and backprojection modules can be adequately accelerated to make the MOLAR reconstruction package much more efficient.
Keywords :
image reconstruction; positron emission tomography; GPU architecture; GPU thread configuration; GPU-accelerated version; HRRT; MOLAR; backprojection operations; computer cluster; floating-point; graphic processing unit; high resolution research tomograph; hybrid forward-backprojection module; image reconstruction; integer conversions; list-mode OSEM PET reconstruction; motion-compensation OSEM list-mode algorithm resolution-recovery reconstruction; parallel computing; thread configurations; Acceleration; Image reconstruction; Image resolution; Imaging phantoms; Kernel; Packaging; Positron emission tomography; Programming environments; Workstations; Yarn;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record (NSS/MIC), 2009 IEEE
Conference_Location :
Orlando, FL
ISSN :
1095-7863
Print_ISBN :
978-1-4244-3961-4
Electronic_ISBN :
1095-7863
Type :
conf
DOI :
10.1109/NSSMIC.2009.5402352
Filename :
5402352
Link To Document :
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