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首页> 外文期刊>Journal of cardiovascular electrophysiology >Virtual electrodes and deexcitation: new insights into fibrillation induction and defibrillation.
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Virtual electrodes and deexcitation: new insights into fibrillation induction and defibrillation.

机译:虚拟电极和除颤:关于颤动诱发和除颤的新见解。

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摘要

Previous models of fibrillation induction and defibrillation stressed the contribution of depolarization during the response of the heart to a shock. This article reviews recent evidence suggesting that comprehending the role of negative polarization (hyperpolarization) also is crucial for understanding the response to a shock. Negative polarization can "deexcite" cardiac cells, creating regions of excitable tissue through which wavefronts can propagate. These wavefronts can result in new reentrant circuits, inducing fibrillation or causing defibrillation to fail. In addition, deexcitation can lead to rapid propagation through newly excitable regions, resulting in the elimination of excitable gaps soon after the shock and causing defibrillation to succeed.
机译:先前的原纤维诱发和除颤模型强调了心脏对电击的反应中去极化的作用。本文回顾了最近的证据,这些证据表明理解负极化(超极化)的作用对于理解电击响应也至关重要。负极化可以“消除”心脏细胞,产生可激发组织的区域,波阵面可通过该区域传播。这些波前可能会导致新的折返电路,引起纤颤或导致除颤失败。此外,去激励会导致通过新的可兴奋区域的快速传播,从而在电击后不久消除可激励间隙,并导致除颤成功。

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