异位活动在人体心房三维现实模型中触发的重入机制。计算机模拟研究

C. Tobón, C. Ruiz, J. Saiz, E. Heidenreich, F. Hornero
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引用次数: 8

摘要

心房颤动(AF)是最常见的心律失常。肺静脉(pv)是心房颤动起始时异位活动的主要来源。心房重构,由于心房颤动期间快速和不规则的激活,使组织易再次进入心房。在这项工作中,电重构的影响被纳入人体心房的三维各向异性模型。在pv附近应用异位聚焦。在左心房后壁模拟电极上计算心电图。在观察到碰撞和波折后,异位焦点诱导了8字形再入并退化为母转子。与旋翼活动相比,8字形再入和碰撞时的电图更为不规则。谱分析显示,由于重入模式的变化,出现了多个频率峰。各测点的主导频率相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reentrant mechanisms triggered by ectopic activity in a three-dimensional realistic model of human atrium. a computer simulation study
Atrial fibrillation (AF) is the most common tachiarrhythmia. The pulmonary veins (PVs) have the predominant source of ectopic activity involved in the initiation of AF. Atrial remodelling, due to rapid and irregular activation during AF, leaves the tissue vulnerable to reentries. In this work the effects of electrical remodelling were incorporated in a 3D anisotropic model of human atrium. An ectopic focus was applied near to PVs. Electrograms were computed in simulated-electrodes in back wall of left atrial. The ectopic focus induced a figure-of-eight reentry that degenerated to mother rotor, after collisions and wave breaks were observed. Electrograms were more irregular during figure-of-eight reentry and collisions than during rotor activity. Spectral analysis shows multiple frequency peaks, as a consequence of changes of reentrant patterns. Dominant frequency was similar in all measuring points.
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