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Initiation of two-armed spiral waves pinned to obstacles in simulated excitable media

机译:在模拟兴奋媒体中引发两臂螺旋波的启动

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Propagating excitations in forms of spiral waves occur in various excitable media governed by reaction-diffusion mechanisms. They have an important impact on human health since they correspond to cardiac arrhythmia and potentially cause life-threatening fibrillation. The spiral waves and the corresponding pathological conditions stay longer when the spiral waves are pinned to unexcitable obstacles, e.g., blood vessels or scars in the heart. We present a method to initiate two-armed spiral waves pinned to a circular obstacle. The initiation is successful when the obstacle diameter is larger than a critical value that increases with the system excitability. This due to the fact the areas close to the partitions sufficiently recover for the next excitation. For obstacles smaller than the critical diameter, the spiral waves fail to be pinned and subsequently two separate free spiral waves occupy the system. While the free spiral waves depend solely on the excitability, the two-armed pinned spiral waves are influenced by both the obstacle size and the excitability.
机译:在由反应扩散机制控制的各种可激发介质中发生螺旋波的形式的激发。它们对人体健康产生了重要影响,因为它们对应于心脏心律失常,并且可能导致危及生命的颤动。当螺旋波固定到无法精英的障碍物时,螺旋波和相应的病理条件保持较长的时间,例如,心脏中的血管或血液。我们提出了一种启动双臂螺旋波,固定到圆形障碍物。当障碍物直径大于随着系统兴奋性增加的临界值时,启动是成功的。这是由于分区附近的区域充分恢复下一次激励。对于小于临界直径的障碍物,螺旋波无法固定,随后两个单独的自由螺旋波占据系统。虽然自由螺旋波完全取决于兴奋性,但双臂固定螺旋波受到障碍物尺寸和兴奋性的影响。

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