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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Membrane polarization induced in the myocardium by defibrillation fields: an idealized 3-D finite element bidomain/monodomain torso model
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Membrane polarization induced in the myocardium by defibrillation fields: an idealized 3-D finite element bidomain/monodomain torso model

机译:除颤场在心肌中诱导的膜极化:理想的3-D有限元双域/单域躯干模型

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This study develops a three-dimensional finite element torso model with bidomain myocardium to simulate the transmembrane potential (TMP) of the heart induced by defibrillation fields. The inhomogeneities of the torso are modeled as eccentric spherical volumes with both the curvature and the rotation features of cardiac fibers incorporated in the myocardial region. The numerical computation of the finite element bidomain myocardial model is validated by a semianalytic solution. The simulations show that rotation of fiber orientation through the depth of the myocardial wall changes the pattern of polarization and decreases the amount of cardiac tissue polarized compared to the idealized analytic model with no fiber rotation incorporated. The TMP induced by transthoracic and transvenous defibrillation fields are calculated and visualized. The TMP is quantified by a continuous measure of the percentage of myocardial mass above a potential gradient threshold. Using this measure, the root mean square differences in TMP distribution produced by reversing the electrode polarity for anterior-posterior and transvenous electrode configurations are 13.6 and 28.6%, respectively. These results support the claim that a bidomain model of the heart predicts a change of defibrillation threshold with reversed electrode polarity.
机译:这项研究开发了一个具有双域心肌的三维有限元躯干模型,以模拟除颤场引起的心脏跨膜电位(TMP)。躯干的不均匀性被建模为偏心球体,并具有合并在心肌区域中的心脏纤维的曲率和旋转特征。通过半解析解验证了有限元双域心肌模型的数值计算。模拟显示,与不包含纤维旋转的理想化分析模型相比,通过心肌壁深度的纤维定向旋转会改变极化模式并减少心脏组织的极化量。经胸和经静脉除纤颤场诱导的TMP被计算和可视化。通过连续测量高于电位梯度阈值的心肌质量百分比来量化TMP。使用这种方法,通过反转电极的前后电极和静脉电极配置产生的TMP分布的均方根差异分别为13.6和28.6%。这些结果支持这样的主张,即心脏的双域模型预测了电极极性相反时除颤阈值的变化。

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