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Intracellular recordings during VF: role of ion channels from experiments and computer models

机译:VF期间的细胞内记录:实验和计算机模型中离子通道的作用

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The authors have developed a method incorporating an isolated rabbit heart and a floating microelectrode which allows not only intracellular recordings during normal sinus rhythm (NSR) and ventricular fibrillation (VF), but also permits control over extracellular ion concentrations and the concentrations of drugs delivered to the heart. Using this method, they analyzed the maximum depolarization velocity during NSR, VF, and VF while perfusing with tetrodotoxin (VF/TTX). These results are compared with those obtained from a one-dimensional (1-D) propagation model of ventricular cells undergoing premature re-excitation and reduced sodium conductance. To better simulate reentrant activation analogous to VF, a 2-D model of coupled network of cells was constructed. The activity of sodium channels was inferred by analyzing the action potentials and sodium channel conductances generated by the 2-D model.
机译:作者已经开发出一种方法,该方法结合了离体的兔心脏和漂浮的微电极,该方法不仅可以在正常窦性心律(NSR)和心室纤颤(VF)期间记录细胞内情况,而且还可以控制细胞外离子浓度和传递给患者的药物浓度心。他们使用这种方法分析了NSR,VF和VF在灌入河豚毒素(VF / TTX)时的最大去极化速度。这些结果与从一维(1-D)传播的室性细胞进行过早的再激励和降低的钠电导所获得的结果进行了比较。为了更好地模拟类似于VF的折返激活,构建了细胞耦合网络的二维模型。通过分析二维模型产生的动作电位和钠通道电导来推断钠通道的活性。

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