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Coupled Iterated Map Models of Action Potential Dynamics in a One-dimensional Cable of Cardiac Cells

机译:心脏细胞的一维电缆中动作电位动力学的耦合迭代映射模型

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摘要

Low-dimensional iterated map models have been widely used to study action potential dynamics in isolated cardiac cells. Coupled iterated map models have also been widely used to investigate action potential propagation dynamics in one-dimensional (1D) coupled cardiac cells, however, these models are usually empirical and not carefully validated. In this study, we first developed two coupled iterated map models which are the standard forms of diffusively coupled maps and overcome the limitations of the previous models. We then determined the coupling strength and space constant by quantitatively comparing the 1D action potential duration profile from the coupled cardiac cell model described by differential equations with that of the coupled iterated map models. To further validate the coupled iterated map models, we compared the stability conditions of the spatially uniform state of the coupled iterated maps and those of the 1D ionic model and showed that the coupled iterated map model could well recapitulate the stability conditions, i.e., the spatially uniform state is stable unless the state is chaotic. Finally, we combined conduction into the developed coupled iterated map model to study the effects of coupling strength on wave stabilities and showed that the diffusive coupling between cardiac cells tends to suppress instabilities during reentry in a 1D ring and the onset of discordant alternans in a periodically paced 1D cable.
机译:低维迭代图模型已被广泛用于研究离体心脏细胞中动作电位的动态变化。耦合迭代图模型也已广泛用于研究一维(1D)耦合心脏细胞中动作电位的传播动力学,但是,这些模型通常是经验性的,未经仔细验证。在这项研究中,我们首先开发了两个耦合的迭代图模型,它们是扩散耦合图的标准形式,并克服了先前模型的局限性。然后,我们通过定量比较微分方程描述的耦合心脏细胞模型的1D动作电位持续时间曲线与耦合迭代图模型的耦合强度和空间常数,来确定耦合强度和空间常数。为了进一步验证耦合的迭代图模型,我们比较了耦合的迭代图和一维离子模型的空间均匀状态的稳定性条件,并表明耦合的迭代图模型可以很好地概括稳定性条件,即空间除非状态混乱,否则均匀状态是稳定的。最后,我们将传导结合到已开发的耦合迭代映射模型中,研究了耦合强度对波动稳定性的影响,结果表明,心肌细胞之间的扩散耦合趋向于抑制一维环折返过程中的不稳定性以及周期性地出现不一致的交替基团。 1D跳线。

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  • 期刊名称 other
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  • 年(卷),期 -1(10),5
  • 年度 -1
  • 页码 055001–055024
  • 总页数 27
  • 原文格式 PDF
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