虚拟人心房异位灶与再入的竞争相互作用

H. Zhang, J. Liu, C. Garratt, A. Holden
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引用次数: 4

摘要

心房心律失常(扑动和颤动)的特点是心房的快速和不规则的激活。有两种可能的机制:异位病灶的异常自发电活动和多重可重入小波。在这项研究中,我们开发了一个虚拟人类心房的生物物理详细计算机模型,以研究两种主要心律失常起源之间的相互作用。根据它们的频率,相位和距离,相互作用与异位焦点或再入主导心房电兴奋竞争。两者之间的碰撞导致进一步的破波和形成多个可重入的小波,为持续性心房颤动提供了一个来源。焦点活动作为组织中心,或驱动和控制再入节奏的母马达被观察到
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Competitive interactions between ectopic foci and reentry in virtual human atrium
Atrial arrhythmias (flutter and fibrillation) are characterised by rapid and irregular activation of atrium. There are two possible mechanisms: abnormal spontaneous electrical activity of ectopic foci and multiple reentrant wavelets. In this study, we developed a biophysically detailed computer model of virtual human atrium to study the interaction between the two major arrhythmic origins. Depending on their frequencies, phases and distance, the interaction is competitive with either ectopic focus or reentry dominating atrial electrical excitation. Collisions between the two lead to further wave-breaks and the formation of multiple reentrant wavelets, providing a source for persistent atrial fibrillation. Focal activity acting as an organising centre, or mother motor which drives and controls the rhythm of reentry was observed
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