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首页> 外文期刊>Journal of cardiovascular electrophysiology >Termination of reentry by a long-lasting AC shock in a slice of canine heart: a computational study.
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Termination of reentry by a long-lasting AC shock in a slice of canine heart: a computational study.

机译:通过对犬心脏切片进行长时间的交流电冲击来终止折返:一项计算研究。

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INTRODUCTION: A heart in fibrillation can be entrained by long-lasting alternating current (AC) stimuli, leading to defibrillation. To investigate the role entrainment plays in defibrillation, computer simulations of AC cardioversion in a three-dimensional slice of the canine heart were performed. METHODS AND RESULTS: A bidomain finite element model of a 1-mm thick slice across the ventricles of a canine heart was used to simulate termination of transmural reentry with AC shocks. Cardioversion defibrillation thresholds (DFTs) were determined for 200-msec (L) AC shocks at varying frequencies. At the DFT, the entire tissue is entrained by the AC shock. DFT decreases as the frequency of the long-lasting AC shock increases. We hypothesize that this decrease is due to the short period of the high-frequency AC waveform, leaving strong virtual electrode polarization (VEP) after the shock ends. To test this hypothesis, the end-shock VEP were compared for different frequencies, demonstrating stronger polarization as frequency increased. To examine whether entrainment by the long-lasting AC shock contributes to the VEP at the end of the shock, additional simulations were conducted using single-period (Z) AC waveforms. Z waveform DFTs were higher than L waveform DFTs; the Z waveform VEP was weaker than the L waveform VEP at the same frequency. This indicates that entrainment contributes to the development of stronger VEP and, thus, to lower DFT at high frequencies. CONCLUSION: This study offers for the first time a mechanistic insight into cardioversion with long-lasting AC shocks.
机译:简介:持续的交流电(AC)刺激可带动纤颤的心脏,从而导致除颤。为了研究夹带在除纤颤中的作用,对犬心脏三维切片中的AC心脏复律进行了计算机模拟。方法和结果:使用双域有限元模型对犬心脏的心室进行了1毫米厚的切片模拟,以模拟AC休克时透壁折返的终止。确定了不同频率下200毫秒(L)交流电击的心脏复律除颤阈值(DFT)。在DFT处,整个组织都被AC电击夹带。 DFT随交流持续冲击频率的增加而降低。我们假设这种下降是由于高频AC波形的周期短,在电击结束后留下了很强的虚拟电极极化(VEP)。为了检验该假设,比较了不同频率下的电击VEP,证明了随着频率增加极化强度增强。为了检查长时间的交流电冲击引起的夹带是否有助于电击结束时的VEP,使用单周期(Z)交流波形进行了附加仿真。 Z波形DFT高于L波形DFT;在相同频率下,Z波形VEP弱于L波形VEP。这表明夹带有助于形成更强的VEP,从而有助于降低高频下的DFT。结论:本研究首次提供了对具有长期AC冲击的心脏复律的机械性见解。

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