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Challenges in Modelling Human Heart's Total Excitation

机译:建模人类心脏总刺激的挑战

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Using a three-dimensional computer model of the human ventricular myocardium, we studied the role of ventricular architecture and conduction system in generating intramural activation patterns and the extracardiac electric field. The model represents the myocardium as an anisotropic bidomain; it incorporates detailed anatomical features, including intramural fiber rotation, the differences in the fiber arrangement of the trabeculae and papillary muscles, and a conduction system. Ectopic activation was elicited at various depths, and "normal" activation was initiated via the conduction system. Extracardiac potentials were calculated throughout each activation sequence. The simulated epicardial potential maps resembled those measured in canine hearts, featuring a central minimum accompanied by two maxima in the early stages of ectopic activation, with the axis joining these extrema approximately parallel to the fibers near the pacing site. The simulated isochrones for the "normal" activation had characteristics very similar to those observed in isolated perfused human hearts.
机译:使用人心室心肌的三维计算机模型,我们研究了心室建筑和传导系统在产生逆向激活模式和外形电场的作用。该模型代表心肌作为各向异性异教育观;它结合了详细的解剖特征,包括内际纤维旋转,小梁和乳头状肌的纤维布置的差异以及传导系统。在各种深度引发异位活化,通过导通系统引发“正常”活化。在每个活化序列中计算肢体电位。模拟外心潜在地图类似于犬心中测量的片状潜在地图,其具有在异位激活的早期阶段中的两个最大值的中央最小值,轴线连接这些极值大致平行于起搏位点附近的纤维。 “正常”激活的模拟等色调具有与分离的灌注人体中观察到的特征非常相似。

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