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Extending Phase Reduction to Excitable Media: Theory and Applications

机译:将相还原扩展到可激发介质:理论与应用

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摘要

Phase reduction methods have been tremendously useful for understanding the dynamics of nonlinear oscillators, but have been difficult to extend to systems with a stable fixed point, such as an excitable system. Using the notion of isostables, which measure the time it takes for a given initial condition in phase space to approach a stable fixed point, we present a general method for isostable reduction for excitable systems. We also devise an adjoint method for calculating infinitesimal isostable response curves, which are analogous to infinitesimal phase response curves for oscillatory systems. Through isostable reduction, we are able to implement sophisticated control strategies in a high-dimensional model of cardiac activity for the termination of alternans, a precursor to cardiac fibrillation.
机译:相位减小方法对于理解非线性振荡器的动力学非常有用,但是很难扩展到具有固定固定点的系统,例如可激励系统。使用等耗量的概念来衡量给定初始条件在相空间中达到稳定的固定点所花费的时间,我们提出了一种可激励系统的等耗量减少的通用方法。我们还设计了一种用于计算无限小等耗响应曲线的伴随方法,该方法类似于振荡系统的无限小相位响应曲线。通过等耗减少,我们能够在心脏活动的高​​维模型中实施复杂的控制策略,以终止心脏颤动的前体交替素。

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