A multi-criteria evaluation method for assessing the defibrillation outcome of different electrode placements in swine.

Dakun Lai, Pengye Li, Qi Xu
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Abstract

Compared with clinical and experimental approaches, numerical modeling of defibrillation offers a great opportunity to optimize the defibrillation strategy in a more individualized way. Through numerical simulation of the shock-induce electric field distribution, the outcome of a certain defibrillation shock could be predicted according to several different metrics. In this paper, we propose a novel evaluation method, in which four defibrillation criteria are assigned with separate weighting factors to quantitatively assess the efficiency of a certain defibrillation shock. Three anatomically realistic finite element models of swine were constructed for the evaluation study of 8 electrode pairs in different placements. In addition, corresponding animal experiments were performed to determine the defibrillation threshold of 8 electrode placements. Both computational and experimental results suggest that the clinical recommended anterior-lateral position is the most efficient electrode displacement for transthoracic defibrillation in swine. In conclusion, the good agreement between stimulations and experiments indicates that the present multi-criteria evaluation method would be potentially useful for optimizations of cardiac defibrillation outcome.
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一种评估猪不同电极位置除颤效果的多标准评价方法。
与临床和实验方法相比,除颤的数值模拟为以更个性化的方式优化除颤策略提供了很大的机会。通过对激电场分布的数值模拟,可以根据几种不同的指标来预测某次除颤休克的结果。在本文中,我们提出了一种新的评估方法,其中四个除颤标准被赋予单独的加权因子,定量评估某一除颤休克的效率。建立了3个解剖逼真的猪有限元模型,对8对不同放置位置的电极进行评价研究。并进行相应的动物实验,确定8个电极放置的除颤阈值。计算和实验结果均表明,临床推荐的前外侧位是猪经胸除颤最有效的电极移位。综上所述,刺激和实验之间的良好一致性表明,本多标准评估方法可能有助于心脏除颤结果的优化。
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