首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Simulation of action potential propagation block on a bidimensional ventricular tissue model during regional myocardial ischaemia
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Simulation of action potential propagation block on a bidimensional ventricular tissue model during regional myocardial ischaemia

机译:区域性心肌缺血期间二维心室组织模型上动作电位传播阻滞的模拟

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During the acute phase of myocardial ischaemia, electrophysiological alterations in ventricular cells exacerbate serious arrhythmias such as reentries. Indeed, extracellular potassium accumulation in an ischaemic zone reduces conduction velocity. Concomitantly, the activation of ATP dependent potassium current (I/sub K(ATP)/) under ischaemic conditions provokes a reduction in action potential duration (APD), creating inhomogeneities within the tissue, which represent the main cause of unidirectional block and reentry. In this work, we investigate the patterns of activation in an isotropic ischaemic bidimensional tissue by means of computer simulations. Using the Luo-Rudy phase II model of ventricular action potential and the I/sub K(ATP)/ formulation, we stimulated prematurely a bidimensional tissue of 5 cm/sup 2/ with a normal zone, an ischaemic zone and a border zone at different instants of time, to reproduce realistic conditions of reentry. Our results agree with experimental works and show the existence of a time interval (window of block), in which propagation is blocked in the central zone of ischaemia.
机译:在心肌缺血的急性期,心室细胞的电生理改变加剧了严重的心律不齐,例如折返。实际上,在缺血区域中细胞外钾的积累降低了传导速度。伴随地,在缺血条件下ATP依赖性钾电流(I / sub K(ATP)/)的激活引起动作电位持续时间(APD)的减少,从而在组织内产生不均匀性,这代表了单向阻滞和折返的主要原因。在这项工作中,我们通过计算机模拟调查各向同性缺血性二维组织中的激活模式。使用Luo-Rudy II期心室动作电位模型和I / sub K(ATP)/制剂,我们过早地刺激了一个5 cm / sup 2 /的二维组织,该组织具有正常区域,缺血区域和边界区域在不同的时刻,重现现实的折返条件。我们的结果与实验工作相吻合,并表明存在一个时间间隔(阻塞的窗口),在该时间间隔中,缺血在缺血中心区域被阻止。

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