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Effects of Anisotropy and Transmural Heterogeneity on the T-Wave Polarity of Simulated Electrograms

机译:各向异性和透壁异质性对模拟电图的T波极性的影响

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The major determinants of the T wave polarity in electrocardiograms (ECGs) are still a debated issue. The aim of this work is to investigate the effects of tissue anisotropy, cellular action potential duration (APD) heterogeneities and excitation wavefront shape on the T wave polarity in unipolar and bipolar ECGs, simulated in a conducting medium surrounding the cardiac tissue at some distance fom endo to epicardium. The study is based on three-dimensional anisotropic Monodomain simulations of the entire depolarization and repolariza-tion phases of propagating action potentials in a parallelepipedal slab. The results show that the T wave of unipolar ECGs is positive at all sites explored and its shape and polarity are mainly determined by the anisotropy of the cardiac tissue, irrespective of cellular APD heterogeneities and shape of the excitation wavefront. On the other hand, bipolar ECGs are mainly affected by their isotropic component and their T wave turns out to be positive for single site stimulations in the presence of transmural APD heterogeneity, while it becomes always negative in case of multiple sites stimulation generating large activation wavefronts, regardless of the considered cellular APD heterogeneities.
机译:心电图(ECG)中T波极性的主要决定因素仍是一个有争议的问题。这项工作的目的是研究组织各向异性,细胞动作电位持续时间(APD)异质性和激发波阵面形状对单极性和双极性ECG中T波极性的影响,在心脏组织周围一定距离fom的传导介质中模拟心外膜。该研究基于平行六面体平板中传播动作电位的整个去极化和复极化阶段的三维各向异性单畴模拟。结果表明,单极心电图的T波在所有探查部位均为正,其形状和极性主要取决于心脏组织的各向异性,而与细胞APD异质性和激发波前的形状无关。另一方面,双极心电图主要受其各向同性分量的影响,并且在跨壁APD异质性的情况下,其T波对于单点刺激为正,而在多点刺激产生较大的激活波阵面的情况下,其T波始终为负。 ,而不考虑细胞APD的异质性。

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