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Influence of myocardial anisotropy on global excitation sequence of the heart and body surface electrocardiogram: a simulation study

机译:心肌各向异性对心脏和体表心电图整体激发序列的影响:模拟研究

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Myocardial anisotropy was incorporated into a three-dimensional heart model, which contained approximately 50,000 discrete units and was assigned with electrophysiologic parameters including action potential, conduction velocity, electric conductivity and others. The fiber orientation of the heart model was made to be different from layer to layer and to rotate 10 degrees per layer counterclockwise in increasing depth from epicardium to endocardium. The total rotation angle was 120 degrees. Anisotropic conduction velocity and electric conductivity were taken into account. The influence of myocardial anisotropy on the global excitation pattern of the heart and on the body surface potentials was investigated in a comparative study with isotropic and anisotropic models. The simulated results showed that incorporating myocardial anisotropy did not change the normality of an isotropic model for a normal heart. On the other hand, simulation of ventricular fibrillation with isotropic and anisotropic models showed that anisotropy may play an important role in forming reentry.
机译:心肌各向异性被纳入三维心脏模型,其包含大约50,000个分立单元,并分配电生理参数,包括动作电位,传导速度,导电性等。使心脏模型的纤维取向与层到层不同,并且逆时针逆时针旋转10度,从表皮的深度增加到心内膜。总旋转角度为120度。考虑各向异性传导速度和电导率。具有各向同性和各向异性模型的比较研究,研究了心肌各向异性对心脏和体表电位全球激发模式的影响。模拟结果表明,掺入心肌各向异性并未改变正常心脏各向同性模型的正常性。另一方面,具有各向同性和各向异性模型的心室颤动的模拟表明各向异性可能在形成再入中发挥重要作用。

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