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In-silico study of the ionic current gradients determining left-to-right atrial frequencies during paroxysmal atrial fibrillation

机译:阵发性心房颤动过程中离子电流梯度决定左心房频率的计算机模拟研究

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摘要

Atrial fibrillation is the most prevalent cardiac arrhythmia. Paroxysmal atrial fibrillation (pAF) may occur in episodes lasting from minutes to days. Recent studies suggest that some pAF episodes present a left-to-right dominant frequency gradient caused by ionic current gradients. However, how each ionic current gradient affects the left-to-right dominant frequency gradient during pAF has not been studied. In this work, we use a 3D model of human atria to study how the ionic current gradients affect the dominant frequency gradient during pAF induced by continuous ectopic activity. The role of the specific gradients of acetylcholine-activated potassium current (I-KACh) and inward-rectifier potassium current (I-K1) on determining the left-to-right dominant frequency gradient was assessed. The main outcome of this study is that either or both of the I-KACh or I-K1 gradients are necessary to induce a left-to-right dominant frequency gradient during pAF. However, both gradients are necessary to the left atrium maintaining, by itself, the pAF episode. These findings have potentially important implications for the development of atrial-selective therapeutic approaches.
机译:房颤是最普遍的心律不齐。阵发性房颤(pAF)可能会持续数分钟至数天。最近的研究表明,某些pAF发作表现出由离子电流梯度引起的从左到右的主导频率梯度。但是,尚未研究每个离子电流梯度如何在pAF期间影响从左到右的主频率梯度。在这项工作中,我们使用人类心房的3D模型研究离子电流梯度如何在连续异位活动诱导的pAF期间影响主频率梯度。评估了乙酰胆碱激活的钾电流(I-KACh)和内向整流器钾电流(I-K1)的特定梯度在确定左右主频梯度上的作用。这项研究的主要结果是,在pAF期间,I-KACh或I-K1梯度中的一个或两个都是诱导左向右主频率梯度所必需的。然而,两个梯度对左心房本身维持pAF发作都是必要的。这些发现对心房选择性治疗方法的发展具有潜在的重要意义。

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