Abstract:
A multi-GPU approach of MRISIMUL, a recently developed step-by-step comprehensive MR physics simulator of the Bloch equation, is presented in this study. The specific aim...Show MoreMetadata
Abstract:
A multi-GPU approach of MRISIMUL, a recently developed step-by-step comprehensive MR physics simulator of the Bloch equation, is presented in this study. The specific aim was to apply MRISIMUL on multi-GPU systems so as to achieve even shorter execution times. We hypothesized that such a simulation platform could achieve a scalable performance with the increasing number of available GPU cards on single node, multi-GPU computer systems. A parallelization strategy was employed using the MATLAB single-program-multiple-data (spmd) statement and an almost linear speedup was observed with the increasing number of available GPU cards on two separate systems: a single computer of 2 quad-core processors and two Tesla C2070 GPU cards and a single computer of 2 hexa-core processors and four Tesla C2075 GPU cards.
Date of Conference: 10-13 November 2013
Date Added to IEEE Xplore: 09 January 2014
Electronic ISBN:978-1-4799-3163-7
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Physical Simulation ,
- multi-GPU Systems ,
- Parallelization ,
- Computer System ,
- Graphics Processing Unit ,
- Single Node ,
- Simulation Platform ,
- Comprehensive Simulation ,
- Bloch Equations ,
- Shorter Execution Time ,
- Magnetic Resonance Imaging ,
- Computational Model ,
- Pulse Sequence ,
- Communication Protocol ,
- Object Parts ,
- Message Passing Interface ,
- Gradient Echo Pulse Sequence
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Physical Simulation ,
- multi-GPU Systems ,
- Parallelization ,
- Computer System ,
- Graphics Processing Unit ,
- Single Node ,
- Simulation Platform ,
- Comprehensive Simulation ,
- Bloch Equations ,
- Shorter Execution Time ,
- Magnetic Resonance Imaging ,
- Computational Model ,
- Pulse Sequence ,
- Communication Protocol ,
- Object Parts ,
- Message Passing Interface ,
- Gradient Echo Pulse Sequence