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首页> 外文期刊>Physical review, E >Extinction dynamics of spiral defect chaos
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Extinction dynamics of spiral defect chaos

机译:螺旋缺陷混沌的灭绝动态

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摘要

Spatially extended excitable systems can exhibit spiral defect chaos (SDC) during which spiral waves continuously form and disappear. To address how this dynamical state terminates using simulations can be computationally challenging, especially for large systems. To circumvent this limitation, we treat the number of spiral waves as a stochastic population with a corresponding birth-death equation and use techniques from statistical physics to determine the mean episode duration of SDC. Motivated by cardiac fibrillation, during which the heart's electrical activity becomes disorganized and shows fragmenting spiral waves, we use generic models of cardiac electrophysiology.We show that the duration can be computed in minimal computational time and that it depends exponentially on domain size. Therefore, the approach can result in efficient and accurate predictions of mean episode duration which may be extended to more complex geometries and models.
机译:空间扩展的兴奋系统可以展示螺旋缺陷混沌(SDC),在此期间螺旋波连续形成和消失。 为了解决这种动态状态如何使用仿真终止,可以计算出挑战,特别是对于大型系统。 为了避免这种限制,我们将螺旋波的数量视为具有相应出生死亡方程的随机群体,并使用来自统计物理学的使用技术来确定SDC的平均发作持续时间。 通过心脏颤动的激励,在这种情况下,心脏的电活动变得混乱并显示碎片螺旋波,我们使用了心电神经学的通用模型。我们表明可以在最小的计算时间内计算持续时间,并且它在域大小上呈指数依赖于趋势。 因此,该方法可以导致平均发作持续时间的有效和准确的预测,其可以扩展到更复杂的几何形状和模型。

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