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Transthoracic Atrial Defibrillation Energy Thresholds are Correlated to Uniformity of Current Density Distributions

机译:经胸房除颤能量阈值与电流密度分布的均匀性相关

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Previous studies have shown that successful defibrillation depends on the uniformity of current density in the heart and the percentage of total current reaching the heart. This study uses an anatomically-realistic finite element computer model of the human torso for external atrial defibrillation to (1) examine the defibrillation energy thresholds and current density distributions for common clinical paddle placements and (2) investigate the effects of electrode shifts on these defibrillation parameters. The model predicts atrial defibrillation threshold (AD FT) energy by requiring a voltage gradient of 5 V/cm over at least 95% of atrial myocardium. This study finds that variation in electrode placement by only a few centimeters increases ADFTs by up to 46% with a corresponding change of 38% between the average current density in the left and right atria and 34% between the heterogeneity indices of atrial current density distributions. Additionally, the heterogeneity index, or degree of uniformity, is linearly correlated to the ADFT (R2=0.9). We suggest that uniformity of current density distribution, in addition to minimum current density, may be an important parameter to use for predicting successful defibrillation when testing new electrode placements
机译:先前的研究表明,成功的除颤取决于心脏中电流密度的均匀性以及到达心脏的总电流的百分比。这项研究使用人体躯干的解剖学逼真的有限元计算机模型对外部房颤进行除颤,以(1)检查常见临床桨叶放置的除颤能量阈值和电流密度分布,以及(2)研究电极移位对这些除颤的影响参数。该模型通过在至少95%的心房心肌上要求5 V / cm的电压梯度来预测房颤除颤阈值(AD FT)能量。这项研究发现,电极位置的变化仅几厘米,ADFTs最多增加46%,左右心房中的平均电流密度之间的对应变化为38%,心房电流密度分布的异质性指标之间的对应变化为34% 。另外,异质性指数或均匀度与ADFT线性相关(R 2 = 0.9)。我们建议,除了最小电流密度以外,电流密度分布的均匀性可能是在测试新电极位置时用于预测成功除颤的重要参数

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