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Simulation study of the contribution of the ATP-dependent potassium current to extracellular potassium accumulation during myocardial ischemia

机译:ATP依赖性钾电流对心肌缺血细胞外钾积累的贡献研究

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In this paper, computer simulations have been carried out to study the contribution of the ATP-dependent K/sup +/ current (I/sub K(ATP)/) to extracellular K/sup +/ accumulation during acute myocardial ischemia. The I/sub K(ATP)/ model described by Ferrero et al. [1996] was introduced into the Luo-Rudy phase II action potential model [1994]. A Na-H exchanger was also formulated and used to balance ion concentrations during normoxia. I/sub K(ATP)/ current was activated in a linear manner for ten minutes of simulated ischemia from 0% to different maximum values. The effect of heart rate was tested considering different basic cycle lengths (BCL) of stimulation. Our results show that the contribution of I/sub K(ATP)/ to the increase of extracellular K/sup +/ concentration ([K/sup +/]) during acute myocardial ischemia represents less than 25% of the experimentally observed K/sup +/ accumulation. This results supports the hypothesis that other mechanisms contribute significantly to the ischemic increase of extracellular K/sup +/ concentration.
机译:本文已经进行了计算机模拟,以研究ATP依赖性K / SUP + /电流(I / SUP K(ATP)/)对急性心肌缺血期间的细胞外K / SUP + /积累的贡献。 Ferrero等人描述的I / SUB K(ATP)/模型。 [1996]被引入罗鲁迪阶段II行动潜力模型[1994]。还配制了Na-H交换器并用于在常氧中平衡离子浓度。 I / SUB K(ATP)/电流以线性方式激活,将模拟缺血的10分钟从0%到不同的最大值。考虑到刺激的不同基本循环长度(BCL)测试了心率的效果。我们的研究结果表明,急性心肌缺血期间I / SUB K(ATP)/增加细胞外K / SUP + /浓度([k / sup + /])的贡献少于25%的实验观察到的k / sup + /累积。该结果支持其他机制对细胞外K / SUP + /浓度的缺血性增加有效的假设。

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