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构建计算机模型以研究浦肯野系统中的锯齿效应。

Construction of a computer model to investigate sawtooth effects in the Purkinje system.

作者信息

Vigmond Edward J, Clements Clyde

机构信息

Department of Electrical and Computer Engineering, University of Calgary, Calgary, AB T2N 1N4, Canada.

出版信息

IEEE Trans Biomed Eng. 2007 Mar;54(3):389-99. doi: 10.1109/TBME.2006.888817.

Abstract

The sawtooth effect refers to how one end of a cardiac cell is depolarized, while the opposite end is hyperpolarized, upon exposure to an exogenous electric field. Although hypothesized, it has not been observed in tissue. The Purkinje system is a one-dimensional (1-D) cable-like system residing on the endocardial surface of the heart and is the most obvious candidate for the manifestation of this phenomenon. This paper describes a computer modeling study of the effect of electric fields on the Purkinje system. Starting with a three-dimensional geometrically realistic, finite element, ventricular description, a Purkinje system is constructed which adheres to general physiological principles. Electrical activity in the Purkinje is described by use of 1-D cubic Hermite finite elements. Such a formulation allows for accurate modeling of loading effects at the Purkinje-myocyte junctions, and for preserving the discrete nature of the system. The response of a strand of Purkinje cells to defibrillation strength shocks is computed under several conditions. Also, the response of the isolated Purkinje network is illustrated. Results indicate that the geometry of the Purkinje system is the greatest determinant for far field excitation of the system. Given parameters within the plausible physiological range, the 1-D nature of the Purkinje system may lead to sawtooth potentials which are large enough to affect excitation. Thus, the Purkinje system is capable of affecting the defibrillation process, and warrants further experimentation to elucidate its role.

摘要

锯齿效应是指心脏细胞的一端在暴露于外源性电场时发生去极化,而另一端则发生超极化。尽管这只是一种假设,但尚未在组织中观察到。浦肯野系统是位于心脏内膜表面的一维(1-D)电缆状系统,是这种现象表现的最明显候选者。本文描述了一项关于电场对浦肯野系统影响的计算机建模研究。从三维几何逼真的有限元心室描述开始,构建了一个符合一般生理原理的浦肯野系统。浦肯野纤维中的电活动通过使用一维三次埃尔米特有限元来描述。这种公式允许对浦肯野细胞与心肌细胞连接处的加载效应进行精确建模,并保持系统的离散性质。在几种条件下计算了一束浦肯野细胞对除颤强度电击的反应。此外,还展示了孤立浦肯野网络的反应。结果表明,浦肯野系统的几何形状是该系统远场兴奋的最大决定因素。在合理的生理范围内给定参数,浦肯野系统的一维性质可能导致足够大的锯齿电位,从而影响兴奋。因此,浦肯野系统能够影响除颤过程,值得进一步实验以阐明其作用。

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