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Global alternans instability and its effect on non-linear wave propagation: dynamical Wenckebach block and self terminating spiral waves

机译:全局奥特南斯不稳定性及其对非线性波传播的影响:动态Wenckebach块和自终止螺旋波

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摘要

The main mechanism of formation of reentrant cardiac arrhythmias is via formation of waveblocks at heterogeneities of cardiac tissue. We report that heterogeneity and the area of waveblock can extend itself in space and can result formation of new additional sources, or termination of existing sources of arrhythmias. This effect is based on a new form of instability, which we coin as global alternans instability (GAI). GAI is closely related to the so-called (discordant) alternans instability, however its onset is determined by the global properties of the APD-restitution curve and not by its slope. The APD-restitution curve relates the duration of the cardiac pulse (APD) to the time interval between the pulses, and can easily be measured in an experimental or even clinical setting. We formulate the conditions for the onset of GAI, study its manifestation in various 1D and 2D situations and discuss its importance for the onset of cardiac arrhythmias.
机译:折返性心律不齐的形成的主要机制是通过在心脏组织异质性处形成波阻。我们报告说,异质性和波阻区域可以在空间中扩展自身,并可能导致形成新的额外来源或终止现有的心律不齐来源。这种影响是基于一种新的不稳定性形式,我们将其称为全球交替不稳定性(GAI)。 GAI与所谓的(不一致的)奥特那不稳定性密切相关,但是它的发作取决于APD恢复曲线的整体性质,而不是其斜率。 APD恢复曲线将心脏脉冲(APD)的持续时间与脉冲之间的时间间隔相关联,并且可以在实验甚至临床环境中轻松测量。我们制定了GAI发作的条件,研究了其在各种1D和2D情况下的表现,并讨论了其对于心律不齐发作的重要性。

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