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Phase-resolved analysis of the susceptibility of pinned spiral waves to far-field pacing in a two-dimensional model of excitable media

机译:在可激发介质的二维模型中,固定螺旋波对远场起搏的敏感性的相位分析

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摘要

Life-threatening cardiac arrhythmias are associated with the existence of stable and unstable spiral waves. Termination of such complex spatio-temporal patterns by local control is substantially limited by anchoring of spiral waves at natural heterogeneities. Far-field pacing (FFP) is a new local control strategy that has been shown to be capable of unpinning waves from obstacles. In this article, we investigate in detail the FFP unpinning mechanism for a single rotating wave pinned to a heterogeneity. We identify qualitatively different phase regimes of the rotating wave showing that the concept of vulnerability is important but not sufficient to explain the failure of unpinning in all cases. Specifically, we find that a reduced excitation threshold can lead to the failure of unpinning, even inside the vulnerable window. The critical value of the excitation threshold (below which no unpinning is possible) decreases for higher electric field strengths and larger obstacles. In contrast, for a high excitation threshold, the success of unpinning is determined solely by vulnerability, allowing for a convenient estimation of the unpinning success rate. In some cases, we also observe phase resetting in discontinuous phase intervals of the spiral wave. This effect is important for the application of multiple stimuli in experiments.
机译:危及生命的心律不齐与稳定和不稳定螺旋波的存在有关。通过局部控制终止这种复杂的时空模式,在很大程度上将螺旋波锚定在自然异质性上。远场起搏(FFP)是一种新的本地控制策略,已被证明能够解开障碍物产生的波浪。在本文中,我们详细研究了固定到异质性的单个旋转波的FFP解锁机制。我们确定了旋转波的定性不同相位机制,表明脆弱性的概念很重要,但不足以解释在所有情况下都无法解除固定的情况。具体而言,我们发现降低的激励阈值甚至在易受攻击的窗口内也可能导致解锁失败。对于较高的电场强度和较大的障碍物,励磁阈值的临界值(在此阈值以下不可能取消固定)减小。相反,对于较高的激励阈值,解除固定的成功仅由脆弱性决定,从而可以方便地估计解除固定的成功率。在某些情况下,我们还观察到螺旋波的不连续相位间隔中的相位重置。该效应对于实验中多重刺激的应用很重要。

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