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Understanding the mechanism of heart dysfunction through modeling and simulation

机译:通过建模和仿真了解心脏功能障碍的机制

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It is known that the electrical activities in the cardiac cells give rise to periodic action potentials in one dimension. So, in order to understand the heart dysfunction, one needs to study the behavior of periodic signals in the myocardium cells of the heart wall. The propagation of these periodic signals is called periodic traveling waves. This paper study the bifurcation behavior in the periodic waves in a two-component FitzHugh-Nagumo type reaction-diffusion system. We show the existence and stability of the periodic traveling waves in a one-parameter family of solutions. An Eckhaus bifurcation is found to occur between stable and unstable periodic traveling waves. We explain the stability by the numerical calculation of essential spectra of the periodic traveling wave solutions. In two dimensions, it is found that a stable spiral pattern bifurcates to a complicated spatiotemporal pattern in the same computational settings.
机译:众所周知,心脏细胞中的电气活性导致一个维度的周期性动作电位。因此,为了了解心脏功能障碍,需要研究心脏壁的心肌细胞中周期信号的行为。这些周期性信号的传播称为周期性行驶波。本文研究了双组分Fitzhugh-Nagumo型反应扩散系统中的周期性波浪中的分叉行为。我们展示了一参数族解决方案中的周期性行驶波的存在和稳定性。发现Eckhaus分叉在稳定和不稳定的周期性行驶波之间发生。我们通过定期行进波解决方案的基本光谱的数值计算来解释稳定性。在两个维度中,发现在相同的计算环境中,稳定的螺旋模式与复杂的时空模式分叉。

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