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A Time Adaptive Scheme Based on the Rush-Larsen Method for Solving Cardiac CellModels

机译:一种基于Rush-Larsen求解心脏细胞映射方法的时间自适应方案

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This paper presents a comparison between numerical schemes for solving electrophysiology models of cardiac myocytes and a new time adaptive scheme based on the Rush-Larsen method. The most recent models for the electrophysiology of cardiac cells are based on highly stiff nonlinear systems of ordinary differential equations. Several explicit numerical schemes for cardiac membrane models have been developed for increasing the computational performance in the simulation of the electrical activity of the heart. In this work we propose a time adaptive method based on the widely used Rush-Larsen method, which is known to have high numerical stability for solving models based on the Hodgkin-Huxley formulation for ionic channels. The new method could improve the computational performance up to six times compared to the performance of Rush-Larsen method.
机译:本文介绍了基于Rush-Larsen方法求解心肌肌细胞电生理模型的数值方案与基于Rush-Larsen方法的新时次自适应方案的数值方案进行了比较。心脏细胞电生理学模型基于常微分方程的高度僵硬的非线性系统。已经开发了几种用于心膜模型的显式数值方案,用于提高心脏电活动模拟中的计算性能。在这项工作中,我们提出了一种基于广泛使用的RUSH-LARSEN方法的时间自适应方法,该方法已知基于霍奇金对Huxley配方进行离子通道的求解模型具有高的数值稳定性。与Rush-Larsen方法的性能相比,新方法可以将计算性能提高到六次。

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