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Scanning and resetting the phase of a pinned spiral wave using periodic far field pulses

机译:使用周期性远场脉冲扫描并重置固定螺旋波的相位

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Spiral waves in cardiac tissue can pin to tissue heterogeneities and form stable pinned waves. These waves can be unpinned by electric stimuli applied close to the pinning center during the vulnerable window of the spiral. Using a phase transition curve (PTC), we quantify the response of a pinned wave in a cardiac monolayer to secondary excitations generated electric field pulses. The PTC can be used to construct a one-dimensional map that faithfully predicts the pinned wave's response to periodic field stimuli. Based on this 1D map, we predict that pacing at a frequency greater than the spiral frequency, over drive pacing, leads to phase locking of the spiral to the stimulus, which hinders unpinning. In contrast, under drive pacing can lead to scanning of the phase window of the spiral, which facilitates unpinning. The predicted mechanisms of phase scanning and phase locking are experimentally tested and confirmed in the same monolayers that were used to obtain the PTC. Our results have the potential to help choose optimal parameters for low energy antifibrillation pacing schemes.
机译:心脏组织中的螺旋波可以钉扎到组织异质性并形成稳定的钉扎波。在易受伤害的螺旋窗口期间,通过施加在钉扎中心附近的电刺激可以解除这些波的钉扎。使用相变曲线(PTC),我们量化了心脏单层固定波对二次激发产生的电场脉冲的响应。 PTC可用于构建一维图,该图忠实地预测固定波对周期磁场刺激的响应。基于此一维映射,我们预测,在高于驱动频率的频率下,以高于螺旋频率的频率进行起搏会导致螺旋与刺激物发生相位锁定,从而阻碍了固定。相反,在驱动器下起搏可能导致扫描螺旋的相位窗口,这有助于松开。对相扫描和锁相的预测机制进行了实验测试,并在用于获得PTC的同一单层中进行了确认。我们的结果可能有助于选择低能耗抗纤颤起搏方案的最佳参数。

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