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浦肯野细胞中由早期后去极化诱导的心室细胞异位活动。

Ectopic activity in ventricular cells induced by early afterdepolarizations developed in Purkinje cells.

作者信息

Monserrat M, Saiz J, Ferrero J M, Ferrero J M, Thakor N V

机构信息

Departamento de Ingenieria Electronica, Universidad Politecnica de Valencia, Spain.

出版信息

Ann Biomed Eng. 2000 Nov-Dec;28(11):1343-51. doi: 10.1114/1.1326032.

Abstract

The development of early afterdepolarizations (EADs) in Purkinje fibers and their propagation to ventricular muscle cells are studied by computer modeling. The Purkinje-ventricular system has been simulated by a two-dimensional model of a Purkinje fiber (PF) connected to a thin sheet of ventricular muscle tissue (VMT). EADs are induced in the PF by enhancing the fast second inward current, iCa,f, and blocking the delayed K+ current, iK, while the VMT is kept under physiological conditions. Different phenomena are observed depending on the EAD conditions applied. For 70% iK blockade and iCa,f enhancement greater than 60%, a single phase 3 EAD developed in the PF propagates to the VMT generating an ectopic beat. For 80% iK blockade and iCa,f enhancement in the range from 0% to 70%, multiple ectopic beats appear in the VMT. However, for iK blockades over 80%, action potentials in PF cells do not repolarize and the ectopic activity in the VMT disappears. In our simulations, the ionic mechanism underlying phase 3 EAD development is the reactivation of the fast sodium current in the PF. Our results demonstrate that there exists a critical range of EAD conditions that favor the development of EADs in the PF and their propagation to the VMT as ectopic activity. This phenomenon could underlie the genesis of some triggered arrhythmias.

摘要

通过计算机建模研究浦肯野纤维中早期后去极化(EADs)的发生及其向心室肌细胞的传播。浦肯野 - 心室系统已通过连接到心室肌组织薄片(VMT)的浦肯野纤维(PF)的二维模型进行模拟。通过增强快速内向第二电流iCa,f并阻断延迟钾电流iK在PF中诱导EADs,同时将VMT保持在生理条件下。根据所施加的EAD条件观察到不同现象。对于70%的iK阻断和大于60%的iCa,f增强,PF中产生的单个3相EAD传播到VMT,产生一个异位搏动。对于80%的iK阻断和0%至70%范围内的iCa,f增强,VMT中出现多个异位搏动。然而,对于超过80%的iK阻断,PF细胞中的动作电位不复极化,VMT中的异位活动消失。在我们的模拟中,3相EAD发生的离子机制是PF中快速钠电流的再激活。我们的结果表明,存在一个关键的EAD条件范围,有利于PF中EADs的发生及其作为异位活动传播到VMT。这种现象可能是一些触发心律失常发生的基础。

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