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心脏兴奋与冲动传播的非线性动力学

Non-linear dynamics of cardiac excitation and impulse propagation.

作者信息

Chialvo D R, Jalife J

机构信息

Department of Pharmacology, SUNY Health Science Center, Syracuse 13210.

出版信息

Nature. 1987;330(6150):749-52. doi: 10.1038/330749a0.

Abstract

Extremely complex frequency-dependent patterns of excitation and impulse propagation can be shown in cardiac tissues. Such complex behaviour can be analysed using methods derived from chaos theory, which is concerned with the non-linear dynamics of deterministic systems that have irregular periodicities as well as an exquisite sensitivity to the initial conditions. We report here that the general response patterns of non-oscillatory cardiac conducting tissues, when driven rhythmically by repetitive stimuli from their surroundings, are similar to those of other deterministic systems showing chaotic dynamics. Such patterns include phase locking, period-doubling bifurcation and irregular activity. We have used electrophysiological techniques and analytical arguments to explain this unforeseen behaviour and to provide some key information about its mechanisms. The study of these dynamics is of general application to the understanding of disordered phenomena in excitable media, and may provide new insight about the origin of fatal cardiac arrhythmias.

摘要

心脏组织中可呈现出极其复杂的频率依赖性兴奋和冲动传播模式。这种复杂行为可使用源自混沌理论的方法进行分析,混沌理论关注具有不规则周期性以及对初始条件极为敏感的确定性系统的非线性动力学。我们在此报告,当非振荡性心脏传导组织受到来自其周围环境的重复刺激有节奏地驱动时,其一般反应模式与其他呈现混沌动力学的确定性系统相似。这些模式包括锁相、倍周期分岔和不规则活动。我们已使用电生理技术和分析论证来解释这种意外行为,并提供有关其机制的一些关键信息。对这些动力学的研究对于理解可兴奋介质中的紊乱现象具有普遍应用价值,并且可能为致命性心律失常的起源提供新的见解。

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