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首页> 外文期刊>American Journal of Physiology >Suppression of alternans and conduction blocks despite steep APD restitution: electrotonic, memory, and conduction velocity restitution effects.
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Suppression of alternans and conduction blocks despite steep APD restitution: electrotonic, memory, and conduction velocity restitution effects.

机译:尽管陡峭的APD复原,但也抑制了交替素和传导阻滞:电声,记忆和传导速度复原效应。

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We examine the utility of the action potential (AP) duration (APD) restitution curve slope in predicting the onset of electrical alternans when electrotonic and memory effects are considered. We develop and use two ionic cell models without memory that have the same restitution curve with slope >1 but different AP shapes and, therefore, different electrotonic effects. We also study a third cell model that incorporates short-term memory of previous cycle lengths, so that it has a family of S1-S2 restitution curves as well as a dynamic restitution curve with slope >1. Our results indicate that both electrotonic and memory effects can suppress alternans, even when the APD restitution curve is steep. In the absence of memory, electrotonic currents related to the shape of the AP, as well as conduction velocity restitution, can affect how alternans develops in tissue and, in some cases, can prevent its induction entirely, even when isolated cells exhibit alternans. When short-term memory is included, alternans may not occur in isolated cells, despite a steep APD restitution curve, and may or may not occur in tissue, depending on conduction velocity restitution. We show for the first time that electrotonic and memory effects can prevent conduction blocks and stabilize reentrant waves in two and three dimensions. Thus we find that the slope of the APD restitution curve alone does not always well predict the onset of alternans and that incorporating electrotonic and memory effects may provide a more useful alternans criterion.
机译:当考虑到电声和记忆效应时,我们研究了动作电位(AP)持续时间(APD)恢复曲线斜率在预测电交替素发作中的效用。我们开发并使用了两个没有记忆的离子电池模型,它们具有相同的恢复曲线,斜率> 1,但AP形状不同,因此电渗效应也不同。我们还研究了第三个单元模型,该模型合并了先前循环长度的短期记忆,因此它具有S1-S2恢复曲线族以及斜率> 1的动态恢复曲线族。我们的结果表明,即使在APD恢复曲线陡峭的情况下,电声和记忆效应也能抑制交替信号。在没有记忆的情况下,与AP的形状有关的电动电流以及传导速度的恢复会影响组织中交替蛋白的发育,在某些情况下,即使分离的细胞表现出交替蛋白,也可能完全阻止其感应。当包括短期记忆时,尽管有陡峭的APD恢复曲线,但交替细胞可能不会出现在分离的细胞中,并且可能会或可能不会出现在组织中,这取决于传导速度的恢复。我们首次证明,电声和记忆效应可以阻止传导阻滞并稳定二维和三维折返波。因此,我们发现仅靠APD恢复曲线的斜率并不总是能够很好地预测替代物的发生,并且结合电声和记忆效应可能会提供更有用的替代物标准。

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