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Assessing shock efficacy as a function of arrhythmia complexity in a slab of the canine heart

机译:评估犬心脏平板中休克疗效与心律失常复杂度的关系

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Cardioversion of a ventricular tachycardia typically requires less energy than defibrillation. It is likely that this is due to the more complex nature of reentrant wavefronts associated with fibrillation. In the present study, we compare current threshold for termination of simple and complex patterns of reentry to assess the effects of preshock myocardial activity on shock efficacy. We use an up-down protocol to determine the termination threshold of either a single or multiple reentry arrhythmia in a bidomain model of a 4 mm thick slab of canine myocardium. We find that the more complex arrhythmia requires 48% more energy than the single reentry to terminate all activity. Examination of postshock activity reveals that a weaker shock is less effective at terminating reentries which are not located directly between the cathode and anode. We conclude that better estimates of defibrillation thresholds must take into account both the chaotic nature of ventricular fibrillation and the possible locations of reentrant pathways.
机译:心室心动过速的心脏复律通常比除纤颤所需的能量更少。这很可能是由于与原纤维形成有关的折返波前性质更为复杂。在本研究中,我们比较了简单和复杂再入模式终止的当前阈值,以评估休克前心肌活动对休克疗效的影响。我们使用上下协议确定4毫米厚犬心肌平板的双域模型中单个或多个折返性心律失常的终止阈值。我们发现,较复杂的心律失常比单次折返需要更多的能量来终止所有活动。震后活动的检查表明,较弱的冲击在终止未直接位于阴极和阳极之间的折返时效果较差。我们得出的结论是,对除颤阈值进行更好的估计必须同时考虑到心室纤颤的混沌性质和折返通路的可能位置。

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