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A coupled heart-torso framework for cardiac electrocardiographic simulation

机译:用于心脏心电图仿真的耦合心脏躯干框架

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The existing works of electrocardiogram (ECG) simulation generally use a static or so called ”one-way” electromechanical coupled heart model. However, electrical and mechanical activities of the heart are inter-dependent, and realistic ECG simulation can only be achieved when such coupled relationship is considered. In this paper, we propose an electromechanical coupled heart model that includes both electromechanical coupling and mecha-noelectrical feedback. The model contains four components: cardiac electrophysiological model, cardiac electromechanical coupling, cardiac mechanics model and cardiac mechanoelectrical feedback. For ECG simulation, the model is incorporated into a coupled heart-torso framework, under which the heart is represented by mesh-free nodes and the torso is represented by boundary elements. A direct projection from volumetric transmembrane potential maps (TMPs) to body surface potential maps (BSPs) can be established through meshfree-BEM method. We calculate ECG signals by the proposed framework and compare them with simulation results of a static heart model, and find the amplitude of T-wave is increased and action potential duration is slightly shortened due to the electromechanical coupled property.
机译:现有的心电图(ECG)模拟工作通常使用静态或所谓的“单向”机电耦合心脏模型。但是,心脏的电气和机械活动是相互依赖的,只有在考虑了这种耦合关系后才能实现真实的ECG模拟。在本文中,我们提出了一种机电耦合的心脏模型,该模型包括机电耦合和机电反馈。该模型包含四个部分:心脏电生理模型,心脏机电耦合,心脏力学模型和心脏机电反馈。对于ECG模拟,将模型合并到耦合的心脏-躯干框架中,在该框架下,心脏由无网格节点表示,躯干由边界元素表示。可以通过无网格BEM方法建立从体积跨膜电势图(TMP)到体表电势图(BSP)的直接投影。我们通过提出的框架计算心电信号,并将其与静态心脏模型的仿真结果进行比较,发现由于机电耦合特性,T波的振幅增加了,动作电位的持续时间略有缩短。

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