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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Effects of the Antiarrhythmic Drug Dofetilide on Transmural Dispersion of Repolarization in Ventriculum. A Computer Modeling Study
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Effects of the Antiarrhythmic Drug Dofetilide on Transmural Dispersion of Repolarization in Ventriculum. A Computer Modeling Study

机译:抗心律失常药多非利特对室壁复极的透壁分散的影响。计算机建模研究

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摘要

Dofetilide is a class-III drug that inhibits the rapid component of the delayed potassium current ( $I_{rm Kr}$). Experimental studies have shown that the different layers of ventricular muscle present differences in action potential duration (APD) and different responses to class III agents. It has been suggested that it contributes to APD heterogeneity in the ventricles. However, in vivo studies suggest that the strong cellular coupling reduces APD dispersion in intact heart. The aim of this paper is to study the effect of dofetilide on the action potentials (APs) in isolated ventricular cells and on APD dispersion in a strand of ventricular tissue. A mathematical model of dofetilide effects on $I_{rm Kr}$ has been developed and incorporated into the Luo--Rudy dynamic model of ventricular AP. Our results show that dofetilide induces in midmyocardium cells a faster time-course inhibition of $I_{rm Kr}$ than in endocardial or epicardial cells, and periods of instability with beat-to-beat APs variability. This behavior could favor temporal dispersion of repolarization between the different cells. The results also indicate that although dofetilide increases, the transmural gradient of APD in the ventricular wall, early afterdepolarizations (EADs) did not appear even under strong uncoupling conditions. However, reduced repolarization reserve favors the induction of EADs, even under normal coupling conditions.
机译:多非利特是一种III类药物,可抑制延迟钾电流($ I_ {rm Kr} $)的快速成分。实验研究表明,不同的心室肌层在动作电位持续时间(APD)和对III类药物的反应不同方面存在差异。已经提出,它有助于心室中的APD异质性。但是,体内研究表明,强烈的细胞偶联会降低APD在完整心脏中的分散性。本文的目的是研究多美替利对分离的心室细胞中动作电位(APs)和心室组织链中APD分散的影响。已经开发了多芬替利对$ I_ {rm Kr} $的影响的数学模型,并将其纳入心室AP的Luo-Rudy动态模型。我们的研究结果表明,与心内膜或心外膜细胞相比,多芬利特在心肌中层细胞中对$ I_ {rm Kr} $的时程抑制作用更快,并且随着心跳对心跳AP的变化而不稳定。这种行为可能有利于不同细胞之间重新极化的时间分散。该结果还表明,尽管多非利特增加,但即使在强解偶联条件下,APD在室壁的透壁梯度,早期除极后(EAD)也没有出现。但是,即使在正常的耦合条件下,减少的复极化储备也有利于诱导EAD。

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