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心脏交替变化模型中共存的混沌和多周期动力学

Coexisting chaotic and multi-periodic dynamics in a model of cardiac alternans.

作者信息

Skardal Per Sebastian, Restrepo Juan G

机构信息

Departament d'Enginyeria Informàtica i Matemàtiques, Universitat Rovira i Virgili, 43007 Tarragona, Spain.

Department of Applied Mathematics, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

Chaos. 2014 Dec;24(4):043126. doi: 10.1063/1.4901728.

Abstract

The spatiotemporal dynamics of cardiac tissue is an active area of research for biologists, physicists, and mathematicians. Of particular interest is the study of period-doubling bifurcations and chaos due to their link with cardiac arrhythmogenesis. In this paper, we study the spatiotemporal dynamics of a recently developed model for calcium-driven alternans in a one dimensional cable of tissue. In particular, we observe in the cable coexistence of regions with chaotic and multi-periodic dynamics over wide ranges of parameters. We study these dynamics using global and local Lyapunov exponents and spatial trajectory correlations. Interestingly, near nodes-or phase reversals-low-periodic dynamics prevail, while away from the nodes, the dynamics tend to be higher-periodic and eventually chaotic. Finally, we show that similar coexisting multi-periodic and chaotic dynamics can also be observed in a detailed ionic model.

摘要

心脏组织的时空动力学是生物学家、物理学家和数学家积极研究的领域。特别令人感兴趣的是对倍周期分岔和混沌的研究,因为它们与心律失常的发生有关。在本文中,我们研究了一种最近开发的用于一维组织电缆中钙驱动交替变化的模型的时空动力学。特别是,我们观察到在电缆中,在很宽的参数范围内存在混沌和多周期动力学区域的共存。我们使用全局和局部李雅普诺夫指数以及空间轨迹相关性来研究这些动力学。有趣的是,在节点或相位反转附近,低周期动力学占主导,而远离节点时,动力学倾向于更高周期并最终变为混沌。最后,我们表明在一个详细的离子模型中也可以观察到类似的多周期和混沌动力学共存现象。

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