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Acceleration of cardiac tissue simulation with graphic processing units

机译:图形处理单元加速心脏组织模拟

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摘要

In this technical note we show the promise of using graphic processing units (GPUs) to accelerate simulations of electrical wave propagation in cardiac tissue, one of the more demanding computational problems in cardiology. We have found that the computational speed of two-dimensional (2D) tissue simulations with a single commercially available GPU is about 30 times faster than with a single 2.0 GHz Advanced Micro Devices (AMD) Opteron processor. We have also simulated wave conduction in the three-dimensional (3D) anatomic heart with GPUs where we found the computational speed with a single GPU is 1.6 times slower than with a 32-central processing unit (CPU) Opteron cluster. However, a cluster with two or four GPUs is faster than the CPU-based cluster. These results demonstrate that a commodity personal computer is able to perform a whole heart simulation of electrical wave conduction within times that enable the investigators to interact more easily with their simulations.
机译:在本技术说明中,我们展示了使用图形处理单元(GPU)加速模拟心脏组织中电波传播的前景,这是心脏病学中要求更高的计算问题之一。我们发现,使用单个市售GPU进行的二维(2D)组织仿真的计算速度比使用单个2.0 GHz Advanced Micro Devices(AMD)Opteron处理器快约30倍。我们还使用GPU在三维(3D)解剖心脏中模拟了波传导,我们发现单个GPU的计算速度比32中央处理单元(CPU)的Opteron群集慢1.6倍。但是,具有两个或四个GPU的群集比基于CPU的群集要快。这些结果表明,商用个人计算机能够在一定时间内执行电波传导的全心仿真,从而使研究人员能够更轻松地与他们的仿真进行交互。

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