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Frequency dependency of pacing determinants of an IK1-mediated rotor drift in the posterior left atrial wall toward the pulmonary veins

机译:左侧左侧壁朝向肺静脉的左侧左侧壁的起搏偏移的起搏决定簇的频率依赖性

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Maintenance of paroxysmal atrial fibrillation (AF) by fast rotors near or at the pulmonary veins (PVs) is not fully understood. We believe that heterogeneous distribution of transmembrane currents in the PVs and LA junction (PV-LAJ) play a major in the localization of rotors in the PVs. We seek for pacing protocols and measurements that could be used to predict drift direction. Experimentally observed heterogeneities in the PV-LAJ were incorporated into 2D and pseudo-3D models of Courtemanche-Ramirez-Nattel-Kneller human atrial kinetics to simulate various conditions and investigate rotor drifting mechanisms and electrophysiological pacing predictors. Simulations with various IK1 gradient conditions and various current-voltage relationships, substantiated its major role in the rotor drift. Among various action potential properties tested, only MDP gradient was found to be a pacing-rate independent predictor of rotor drift direction. Our simulations suggest that IK1 heterogeneity is dominant in conveying the drift direction through its impact on the global excitability and refractoriness gradients and more importantly it is only reflected in pacing studies in a frequency dependent manner. Our results call out for precaution when extrapolating results determined from pacing studies, commonly performed at 2 Hz.
机译:通过近距离转子(PVS)附近或处于肺静脉(PVS)的快速转子的维持维持伴病症(AF)。我们认为,PVS和LA结(PV-LAJ)中的跨膜电流的异构分布在PVS中的转子定位中起主要的主要部分。我们寻求可以用于预测漂移方向的起搏协议和测量。 PV-LAJ中的实验观察到的异质性被纳入2D和伪3D模型的Courtemumanche-Ramirez-Nattel-Cneller人体心房动力学,以模拟各种条件并研究转子漂移机制和电生理起搏预测因子。模拟具有各种IK1梯度条件和各种电流关系的模拟,在转子漂移中证实了其主要作用。在测试的各种动作潜在特性中,仅发现MDP梯度是转子漂移方向的起搏速率独立预测器。我们的模拟表明IK1异质性在通过对全球兴奋性和耐火性梯度的影响传达漂移方向,更重要的是,它仅在频率依赖性方式中反映起搏研究。我们的结果在从起搏研究确定的推断结果外,我们的结果呼吁预防,通常在2 Hz。

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