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Eliminating pinned spiral waves in cardiac monolayer by far field pacing

机译:通过远场起搏消除心脏单层的固定螺旋波

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Fibrillation in the heart often consists of multiple spiral waves of electrical activation in cardiac tissue. To terminate these multiple waves, recently proposed Low Energy Antifibrillation Pacing (LEAP) uses a series of low energy pulses. This achieves an energy reduction of about 80% in animal experiments. To understand the mechanism of LEAP we study the interaction of electric pulses with pinned spiral waves in monolayers of cardiac cells. Optical mapping and controlled placing of heterogeneities allow us to observe the activation dynamics in these monolayers during field pulsing. We show that a pinned wave can be terminated by a series of pulses when one of the pulses falls in the vulnerable window of the pinned spiral.
机译:心脏的颤动通常由心脏组织中的电激活的多个螺旋波组成。为了终止这些多波,最近提出的低能量抗灰度起搏(LEAP)使用一系列低能量脉冲。这实现了动物实验中的能量减少约80%。要了解飞跃机制,我们研究了电脉冲与心脏细胞单层固定螺旋波的相互作用。光学映射和受控放置的异质性允许我们在现场脉冲期间观察这些单层中的激活动力学。我们表明当其中一个脉冲落入钉螺纹螺旋的脆弱窗口时,彼此脉冲可以通过一系列脉冲终止。

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