Computer Simulations of Cardiac Electrophysiology

J. Pormann, C. Henriquez, J. Board, D. Rose, D. Harrild, Alexandra P. Henriquez
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引用次数: 9

Abstract

CardioWave is a modular system for simulating wavefront conduction in the heart. These simulations may be used to investigate the factors that generate and sustain life-threatening arrhythmias such as ventricular fibrillation. The user selects a set of modules which most closely reflects the simulation they are interested in and the simulator is built automatically. Thus, we do not present one monolithic simulator, but rather a simulator-generator which allows the researcher to make the trade-offs of complexity versus performance. The results presented here are from simulations run on an IBM SP parallel computer and a cluster of workstations. The performance numbers show excellent scalability up through 128 processors. With the larger memory of the parallel machines, we have been able to perform highly realistic simulations of the human atria. These simulations include realistic, 3-D geometries with inhomogeneity and anisotropy as we as highly complex membrane dynamics.
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心脏电生理的计算机模拟
CardioWave是一个模拟心脏波前传导的模块化系统。这些模拟可用于研究产生和维持危及生命的心律失常(如心室颤动)的因素。用户选择一组最能反映他们感兴趣的仿真的模块,并自动构建仿真器。因此,我们不提供一个单片模拟器,而是一个模拟器生成器,它允许研究人员在复杂性和性能之间进行权衡。本文给出的结果来自在IBM SP并行计算机和一个工作站集群上运行的模拟。性能数据显示了出色的可伸缩性,最高可达128个处理器。由于并行机器的内存更大,我们已经能够对人类心房进行高度逼真的模拟。这些模拟包括具有非均匀性和各向异性的现实三维几何形状,以及高度复杂的膜动力学。
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