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起搏心脏组织中交替现象的不稳定性及时空动力学

Instability and spatiotemporal dynamics of alternans in paced cardiac tissue.

作者信息

Echebarria Blas, Karma Alain

机构信息

Department of Physics and Center for Interdisciplinary Research on Complex Systems, Northeastern University, Boston, Massachusetts 02115, USA.

出版信息

Phys Rev Lett. 2002 May 20;88(20):208101. doi: 10.1103/PhysRevLett.88.208101. Epub 2002 May 6.

Abstract

We derive an equation that governs the spatiotemporal dynamics of small amplitude alternans in paced cardiac tissue. We show that a pattern-forming linear instability leads to the spontaneous formation of stationary or traveling waves whose nodes divide the tissue into regions with opposite phase of oscillation of action potential duration. This instability is important because it creates dynamically a heterogeneous electrical substrate for the formation of conduction blocks and the induction of fibrillation if the tissue size exceeds a fraction of the pattern wavelength. We derive an analytical expression for this wavelength as a function of three basic length scales related to dispersion and intercellular electrical coupling.

摘要

我们推导了一个控制心脏起搏组织中小振幅交替变化的时空动力学方程。我们表明,一种形成图案的线性不稳定性会导致静止波或行波的自发形成,其节点将组织划分为动作电位持续时间振荡相位相反的区域。这种不稳定性很重要,因为如果组织大小超过图案波长的一部分,它会动态地产生一个异质电基质,用于形成传导阻滞和诱发纤颤。我们推导了该波长的解析表达式,它是与色散和细胞间电耦合相关的三个基本长度尺度的函数。

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