Influence of Purkinje-muscle coupling on EAD development: a simulation study

M. Monserrat, J. Saiz, J. Ferrero, V. Torres, N. Thakor
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引用次数: 1

Abstract

Early after depolarizations (EADs) are irregularities that occur during the repolarization phase of the action potential (AP) interrupting or delaying normal repolarization. In this work, computer simulations have been used to study the influence of Purkinje-muscle coupling on EADs generated in Purkinje cells. The electrical behaviour of the ventricular (V) and Purkinje (P) cells have been simulated using the Luo-Rudy phase II model and the DiFrancesco-Noble equations, respectively. EADs were induced in the P cells by enhancing the Ca/sup 2+/ current through the L-type channels and partially blocking the delayed rectifying K/sup +/ current. The authors' results suggest that the P-V connection reduces the likelihood of appearance of EADs in Purkinje fibers (PFs). Moreover, when EADs occur in P cells, there is a range of coupling values that allows their propagation as APs to the V cells.
Purkinje-muscle coupling对EAD发展影响的模拟研究
早后去极化(EADs)是指在动作电位(AP)复极化阶段发生的异常现象,它中断或延迟了正常的复极化。在这项工作中,计算机模拟研究了浦肯野-肌肉耦合对浦肯野细胞中产生的EADs的影响。分别使用Luo-Rudy phase II模型和DiFrancesco-Noble方程模拟了心室(V)和浦肯野细胞(P)的电行为。通过l型通道增强Ca/sup +/电流,部分阻断延迟整流的K/sup +/电流,在P细胞中诱导EADs。作者的研究结果表明,P-V连接降低了浦肯野纤维(PFs)中出现EADs的可能性。此外,当EADs发生在P细胞中时,存在一系列耦合值,允许它们作为ap传播到V细胞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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