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Reentry Anchoring at a Pair of Pulmonary Vein Ostia

机译:在一对肺静脉骨膜的锚定锚定

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Recent findings in a sheep model of atrial fibrillation support the hypothesis that an organized micro-reentry could be the maintaining mechanism of the arrhythmia (mother wavelet). According to these studies we constructed a two dimensional computer model of tissue in the region around a pair of pulmonary vein ostia and investigated anchoring of a reentry wave at these ostia. We used the Luo Rudy phase I ionic current model to describe membrane kinetics and generated two different stages of electrical remodelling of the cells by varying the slow inward calcium current. Our attempt to initiate a stable reentry failed for cells with higher action potential duration and higher rate adaption. By simulating a higher stadium of electrical remodelling we finally were successful, and we were able to produce a periodic reentry. This led us to the conclusion that a low rate adaption (high electrical remodelling) facilitates organized activity in the atria.
机译:心房颤动的绵羊模型中最近的发现支持组有组织的微再入物可以是心律失常(母母小波)的维持机制。根据这些研究,我们在一对肺静脉骨周围的地区构建了一两维计算机模型,并在这些骨质中研究了再入波的锚定。我们使用Luo Rudy阶段I离子电流模型来描述膜动力学,并通过改变慢速向内钙电流产生细胞的两种不同的电气重塑阶段。我们试图启动稳定的再入性,对具有更高动作潜在持续时间和更高速率适应的细胞失败。通过模拟较高的电气重塑体育场,我们终于成功了,我们能够生产周期性的再进入。这使我们得出结论,低速率适应(高电气重塑)有助于在Atria中有组织的活动。

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