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A Meshfree Method for Simulating Myocardial Electrical Activity

机译:模拟心肌电活动的无网格方法

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摘要

An element-free Galerkin method (EFGM) is proposed to simulate the propagation of myocardial electrical activation without explicit mesh constraints using a monodomain model. In our framework the geometry of myocardium is first defined by a meshfree particle representation that is, a sufficient number of sample nodes without explicit connectivities are placed in and inside the surface of myocardium. Fiber orientations and other material properties of myocardium are then attached to sample nodes according to their geometrical locations, and over the meshfree particle representation spatial variation of these properties is approximated using the shape function of EFGM. After the monodomain equations are converted to their Galerkin weak form and solved using EFGM, the propagation of myocardial activation can be simulated over the meshfree particle representation. The derivation of this solution technique is presented along a series of numerical experiments and a solution of monodomain model using a FitzHugh-Nagumo (FHN) membrane model in a canine ventricular model and a human-heart model which is constructed from digitized virtual Chinese dataset.
机译:提出了一种无元素伽勒金方法(EFGM),该方法使用单域模型来模拟没有明确网格约束的心肌电激活的传播。在我们的框架中,心肌的几何形状首先由无网格的粒子表示来定义,也就是说,将足够数量的没有显式连接的样本节点放置在心肌的表面和内部。然后根据其几何位置将心肌的纤维方向和其他材料特性附加到样本节点,并在无网格粒子表示上使用EFGM的形状函数来近似这些特性的空间变化。将单域方程式转换为Galerkin弱形式并使用EFGM求解后,可以在无网格粒子表示上模拟心肌激活的传播。通过一系列数值实验和使用FitzHugh-Nagumo(FHN)膜模型在犬心室模型和由数字化虚拟中文数据集构建的人心模型的单域模型的解决方案中,提出了该解决方案技术的推导。

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