首页> 外文会议>International Congress on Electrocardiology >INVESTIGATION OF ELECTRICAL DEFIBRILLATION OFCHAOTICALLY FIBRILLATING HUMAN VENTRICULARMYOCARDIUM IN A COMPUTER MODEL
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INVESTIGATION OF ELECTRICAL DEFIBRILLATION OFCHAOTICALLY FIBRILLATING HUMAN VENTRICULARMYOCARDIUM IN A COMPUTER MODEL

机译:计算机模型中纤维化人心室的电力除颤研究

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Defibrillation is the most important measure of resuscitation aiming at restoration of the physiological heart rhythm. A complete understanding of the defibrillation mechanism has not been achieved yet. The research presented in this article gives a mathematical computer simulation of the defibrillation of chaotically fibrillating human ventricular myocardium. The study was done with a model representing a three-dimensional wedge of human ventricular myocardial tissue. The cellular electrophysiology was described with the Priebe-Beuckelmann model. The electrical activity of the cardiac tissue was calculated with a bidomain model. A spiral wave was induced in the myocardium with standard S1-S2 protocols. The myocardium was brought into a chaotically fibrillating state by breaking the spiral wave. Few hundred milliseconds after the chaotically fibrillation started, monophasic electrical defibrillating shocks were applied through planar electrodes. The defibrillation shocks were applied at different moments. At each chosen moment we studied both cases of electrical polarity. The reaction of myocardium was studied during the following 400 ms. The results are indicating important information related to the factors, which are influencing the defibriflation success.
机译:除颤是旨在旨在恢复生理心律的复苏的最重要措施。完全了解除颤机制尚未实现。本文提出的研究给出了混合纤维纤维状人心室心肌的除颤的数学计算机模拟。该研究是用代表人心室心肌组织的三维楔形的模型完成的。用Priebe-Beuckelmann模型描述了蜂窝电生理学。用苯体素模型计算心脏组织的电活动。用标准S1-S2方案在心肌中诱导螺旋波。通过破坏螺旋波,心肌进入混沌原纤化状态。在络合原纤化开始后几百毫秒,通过平面电极施加单张电电除颤冲击。在不同的时刻施加除颤冲击。在每个所选择的时刻,我们研究了两种电极性。在以下400毫秒期间研究了心肌的反应。结果表明与影响反纤化成功的因素有关的重要信息。

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