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An Electro-Mechanical Cardiac Simulator Based on Cellular Automata and Mass-Spring Models

机译:基于蜂窝自动机和质量弹簧模型的机电心电图模拟器

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The mechanical behavior of the heart is guided by the propagation of an electrical wave, called action potential. Many diseases have multiple effects on both electrical and mechanical cardiac physiology. To support a better understanding of the multiscale and multiphysics processes involved in physiological and pathological cardiac conditions, a lot of work has been done in developing computational tools to simulate the electro-mechanical behavior of the heart. In this work, we propose a new user-friendly and efficient tool for the electro-mechanical simulation of the cardiac tissue that is based on cellular automata and mass-spring models. The proposed tool offers a user-friendly interface that allows one to interact with the simulation on-the-fly. In addition, the simulator is parallelized with CUDA and OpenMP to further speedup the execution time of the simulations.
机译:心脏的力学行为被电波的传播引导,称为动作电位。许多疾病对电气和机械心脏生理有多种影响。为了更好地理解涉及生理和病理心脏病的多尺度和多发性过程,在开发计算工具中已经完成了大量工作以模拟心脏的电力行为。在这项工作中,我们为基于蜂窝自动机和质量弹簧模型的心脏组织的电力机械模拟提出了一种新的用户友好型和高效的工具。该拟议的工具提供了一个用户友好的界面,允许其中与飞行模拟交互。此外,模拟器与CUDA和OpenMP并行化,以进一步加速模拟的执行时间。

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