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首页> 外文期刊>American Journal of Physiology >The pinwheel experiment revisited: effects of cellular electrophysiological properties on vulnerability to cardiac reentry.
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The pinwheel experiment revisited: effects of cellular electrophysiological properties on vulnerability to cardiac reentry.

机译:重新审查了风车实验:细胞电生理特性对心脏折返的脆弱性的影响。

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摘要

In normal heart, ventricular fibrillation can be induced by a single properly timed strong electrical or mechanical stimulus. A mechanism first proposed by Winfree and coined the "pinwheel experiment" emphasizes the timing and strength of the stimulus in inducing figure-of-eight reentry. However, the effects of cellular electrophysiological properties on vulnerability to reentry in the pinwheel scenario have not been investigated. In this study, we extend Winfree's pinwheel experiment to show how the vulnerability to reentry is affected by the graded action potential responses induced by a strong premature stimulus, action potential duration (APD), and APD restitution in simulated monodomain homogeneous two-dimensional tissue. We find that a larger graded response, longer APD, or steeper APD restitution slope reduces the vulnerable window of reentry. Strong graded responses and long APD promote tip-tip interactions at long coupling intervals, causing the two initiated spiral wave tips to annihilate. Steep APD restitution promotes wave front-wave back interaction, causing conduction block in the central common pathway of figure-of-eight reentry. We derive an analytical treatment that shows good agreement with numerical simulation results.
机译:在正常心脏中,可以通过一次适当的定时强电或机械刺激来诱发心室纤颤。 Winfree首先提出了一种机制,并创造了“风车实验”,该机制强调了诱导八位图重入的刺激的时机和强度。但是,尚未研究风车场景下细胞电生理特性对折返脆弱性的影响。在这项研究中,我们扩展了Winfree的风车实验,以显示在模拟的单域均匀二维组织中,强烈的过早刺激,动作电位持续时间(APD)和APD复原导致的分级动作电位响应如何影响折返的脆弱性。我们发现,更大的分级响应,更长的APD或更陡峭的APD恢复坡度会减小脆弱的折返窗口。强的渐变响应和长的APD会在较长的耦合间隔内促进尖端之间的相互作用,从而导致两个引发的螺旋波尖端消失。陡峭的APD恢复会促进波前波向后相互作用,从而在八字形折返中心共同路径中引起传导阻滞。我们推导了一种分析处理,它与数值模拟结果显示出很好的一致性。

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