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相位奇点与细丝:简化心室颤动计算模型中的复杂性

Phase singularities and filaments: simplifying complexity in computational models of ventricular fibrillation.

作者信息

Clayton R H, Zhuchkova E A, Panfilov A V

机构信息

Department of Computer Science, University of Sheffield, Regent Court, 211 Portobello Street, Sheffield, S1 4DP, UK.

出版信息

Prog Biophys Mol Biol. 2006 Jan-Apr;90(1-3):378-98. doi: 10.1016/j.pbiomolbio.2005.06.011. Epub 2005 Jul 25.

Abstract

In the whole heart, millions of cardiac cells are involved in ventricular fibrillation (VF). Experimental studies indicate that VF is sustained by re-entrant activity, and that each re-entrant wave rotates around a filament of phase singularity. Filaments act as organising centres, and offer a way to simplify and quantify the complex spatio-temporal behaviour observed in VF. Where a filament touches the surface of fibrillating myocardium re-entrant activity can be observed, however the behaviour of filaments within bulk ventricular myocardium is difficult to observe directly using present experimental techniques. Large scale computational simulations of VF in three-dimensional (3D) tissue offer a tool to investigate the properties and behaviour of filaments, and the aim of this paper is to review recent advances in this area as well as to compare recent computational studies of fibrillation in whole ventricle geometries.

摘要

在整个心脏中,数百万个心肌细胞参与心室颤动(VF)。实验研究表明,心室颤动由折返活动维持,并且每个折返波围绕一个相位奇点细丝旋转。细丝充当组织中心,并提供了一种简化和量化在心室颤动中观察到的复杂时空行为的方法。当细丝接触颤动心肌表面时,可以观察到折返活动,然而,使用目前的实验技术很难直接观察到心室心肌内部细丝的行为。三维(3D)组织中心室颤动的大规模计算模拟提供了一种研究细丝特性和行为的工具,本文的目的是回顾该领域的最新进展,并比较最近在全心室几何结构中颤动的计算研究。

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