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单纤维计算机模型中延迟激发后的反射

Reflection after delayed excitation in a computer model of a single fiber.

作者信息

Cabo C, Barr R C

机构信息

Department of Biomedical Engineering, Duke University, Durham, N.C. 27706.

出版信息

Circ Res. 1992 Aug;71(2):260-70. doi: 10.1161/01.res.71.2.260.

Abstract

Reflection (reflected reentry) is a case of reentry in a one-dimensional structure, divided into proximal and distal segments, in which tissue excited by a wave front propagating in a forward direction is reexcited by electrical activity coming backward from the original direction of propagation. Cases of reflection have been demonstrated in Purkinje fibers and in ventricular muscle preparations containing multiple fibers. Several mechanisms possibly responsible for reflected reentry have been proposed. However, the difficulty in the interpretation of the experimental results, as well as the limited number of different conditions in which reflection was obtained, has kept open the question about conditions and mechanisms for reflection. We have developed a computer model in which reflection occurs. The model involves a single fiber and uses the DiFrancesco-Noble equations for the Purkinje fiber to model the ionic currents. The results show that reflection is possible in a single fiber and that diastolic depolarization (automaticity) is not a requirement for reflection. Active membrane responses to a just-above-threshold stimulus were important for achieving the necessary time delay. Systematic simulations showed further that reflection occurred only when the right coupling conditions linked a short or long proximal fiber to a short distal segment.

摘要

折返(反射性折返)是一维结构中的折返情况,该结构分为近端和远端节段,其中由向前传播的波前激发的组织被从原始传播方向向后传来的电活动再次激发。折返的情况已在浦肯野纤维和含有多根纤维的心室肌标本中得到证实。已经提出了几种可能导致反射性折返的机制。然而,实验结果解释的困难,以及获得折返的不同条件数量有限,使得关于折返的条件和机制的问题仍然悬而未决。我们开发了一个会发生折返的计算机模型。该模型涉及单根纤维,并使用浦肯野纤维的迪弗朗切斯科 - 诺布尔方程来模拟离子电流。结果表明,单根纤维中可能发生折返,并且舒张期去极化(自律性)不是折返的必要条件。对刚好高于阈值的刺激的主动膜反应对于实现必要的时间延迟很重要。系统模拟进一步表明,只有当正确的耦合条件将短或长的近端纤维与短的远端节段相连时才会发生折返。

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