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Vulnerability in an excitable medium: analytical and numerical studies of initiating unidirectional propagation.

机译:可激发介质中的脆弱性:启动单向传播的分析和数值研究。

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摘要

Cardiac tissue can display unusual responses to certain stimulation protocols. In the wake of a conditioning wave of excitation, spiral waves can be initiated by applying stimuli timed to occur during a period of vulnerability (VP). Although vulnerability is well known in cardiac and chemical media, the determinants of the VP and its boundaries have received little theoretical and analytical study. From numerical and analytical studies of reaction-diffusion equations, we have found that 1) vulnerability is an inherent property of Beeler-Reuter and FitzHugh-Nagumo models of excitable media; 2) the duration of the vulnerable window (VW) the one-dimensional analog of the VP, is sensitive to the medium properties and the size of the stimulus field; and 3) the amplitudes of the excitatory and recovery processes modulate the duration of the VW. The analytical results reveal macroscopic behavior (vulnerability) derived from the diffusion of excitation that is not observable at the level of isolated cells or single reaction units.
机译:心脏组织可能显示出对某些刺激方案的异常反应。在激发条件波激发之后,可以通过施加在脆弱性(VP)期间发生的定时刺激来引发螺旋波。尽管脆弱性在心脏和化学介质中是众所周知的,但VP的决定因素及其边界却鲜有理论和分析研究。通过对反应扩散方程的数值和分析研究,我们发现:1)易损性是Beeler-Reuter和FitzHugh-Nagumo可激发介质模型的固有特性; 2)脆弱窗口(VW)的一维模拟的持续时间,对介质属性和刺激场的大小敏感; 3)兴奋和恢复过程的幅度调节大众的持续时间。分析结果表明,宏观的行为(脆弱性)源于激发的扩散,这在分离的细胞或单个反应单元的水平上是无法观察到的。

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