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Wave trains induced by circularly polarized electric fields in cardiac tissues

机译:心脏组织中的圆极化电场引起的波列

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摘要

Clinically, cardiac fibrillation caused by spiral and turbulent waves can be terminated by globally resetting electric activity in cardiac tissues with a single high-voltage electric shock, but it is usually associated with severe side effects. Presently, a promising alternative uses wave emission from heterogeneities induced by a sequence of low-voltage uniform electric field pulses. Nevertheless, this method can only emit waves locally near obstacles in turbulent waves and thereby requires multiple obstacles to globally synchronize myocardium and thus to terminate fibrillation. Here we propose a new approach using wave emission from heterogeneities induced by a low-voltage circularly polarized electric field (i.e., a rotating uniform electric field). We find that, this approach can generate circular wave trains near obstacles and they propagate outwardly. We study the characteristics of such circular wave trains and further find that, the higher-frequency circular wave trains can effectively suppress spiral turbulence.
机译:临床上,由螺旋波和湍流波引起的心脏纤颤可以通过一次高压电击使心脏组织中的整体电活动复位来终止,但通常会带来严重的副作用。当前,一种有前途的替代方法是利用由一系列低压均匀电场脉冲引起的异质性产生的波发射。然而,该方法只能在湍流中的障碍物附近局部发射波,从而需要多个障碍物来整体同步心肌并因此终止原纤维形成。在这里,我们提出了一种新方法,该方法利用了由低压圆极化电场(即旋转均匀电场)引起的异质性产生的波发射。我们发现,这种方法可以在障碍物附近生成圆波列,并且它们向外传播。我们研究了这种圆形波列的特性,并进一步发现,高频圆形波列可以有效地抑制螺旋湍流。

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