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首页> 外文期刊>Journal of cardiovascular electrophysiology >Delayed success in termination of three-dimensional reentry: role of surface polarization.
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Delayed success in termination of three-dimensional reentry: role of surface polarization.

机译:延迟成功终止三维折返:表面极化作用。

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INTRODUCTION: Defibrillation shocks slightly stronger than cardioversion threshold may defibrillate not immediately but after a transient period of postshock activity (delayed success). The effect of a defibrillation shock is that it polarizes the tissue, primarily at the surfaces; therefore, surface polarization may play an important role at near-threshold shock intensities. METHODS AND RESULTS: We numerically investigate the effect of a monophasic transmural electrical shock on a three-dimensional (3D) reentrant wave (scroll wave). For simplicity, we assume uniform polarization of the epicardial and endocardial surfaces. We demonstrate that the effect of surface polarization alone is sufficient to induce delayed termination of self-sustained activity (3-4 beats after the shock). In agreement with experimental observations, both successful and failed shocks cause prolongation of the action potentials on the depolarized side and shortening on the hyperpolarized side, while at the same time inducing a shift from a reentrant to a focal activation pattern. Our simulations suggest that the outcome of the shock is determined by its effect on the shape of the scroll wave's center of rotation (filament). We propose a simple rule to predict the postshock filament shape that allows us to make accurate predictions of success and failure of a termination attempt. CONCLUSION: Surface polarization due to an electrical shock can terminate a reentrant scroll wave. This mechanism may explain the phenomenon of delayed success in defibrillation.
机译:简介:除颤电击略强于电复律阈值可能不会立即除颤,而是在短暂的震后活动(成功延迟)后除颤。除颤电击的作用是使组织极化,主要是在表面。因此,表面极化可能在接近阈值的冲击强度上起重要作用。方法和结果:我们数值研究了单相经壁电击对三维(3D)折返波(滚动波)的影响。为简单起见,我们假设心外膜和心内膜表面的极化均匀。我们证明,仅表面极化的作用足以诱导自我维持活动的延迟终止(电击后3-4拍)。与实验观察一致,成功和失败的电击都会导致去极化一侧的动作电位延长,而超极化一侧的动作电位缩短,同时引起从折返型向局灶性激活模式的转变。我们的模拟表明,冲击的结果取决于其对涡旋波旋转中心(细丝)形状的影响。我们提出了一条简单的规则来预测震后的灯丝形状,从而使我们能够准确地预测终止尝试的成功与失败。结论:由于电击引起的表面极化可终止折返涡旋波。该机制可以解释除颤延迟成功的现象。

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