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Paroxysmal atrial fibrillation caused by interaction of pacemakerwaves and reduced excitability: Insights from the Bueno-Orovio model adapted to atria

机译:通过起飞架波的相互作用和降低兴奋性引起的阵发性心房颤动:来自对Atria的Bueno-orovio模型的见解

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As possible cause for atrial fibrillation (AF) we study the influence of a reduced excitability on the interaction of pacemaker waves in the Bueno-Orovio model with parameters adapted to atrial electrophysiology (aBO). One of the two pacemakers represents the sinus node and the other one a self-excitatory source in the left atrium. The pacemakers are spatially separated and their waves get in contact via a small bridge. In previous studies based on the FitzHugh-Nagumo (FHN) model it was shown that three different types of irregular activation patterns can occur in this problem. In the aBO model adapted to physiological conditions only one type is observed because, different from the FHN model, a reduction of excitability due to high-frequency pacing does not occur. If the excitability is reduced in the aBO model, all types of irregularities are recovered and, in addition, a further type is found. Because transitions from regular to irregular behavior depend on the pacing frequency, our findings provide a possible explanation for the phenomenon of paroxysmal AF.
机译:作为心房颤动(AF)可能的原因(AF),我们研究了对Bueno-orovio模型中起搏器波的相互作用的影响,其具有适应心房电生理学(ABO)的参数。两个起搏器之一代表窦节心节和左心房的另一个自我激动源。起搏器在空间上分开,他们的波浪通过小桥接触。在基于Fitzhugh-Nagumo(FHN)模型的先前研究中,显示在该问题中可能发生三种不同类型的不规则激活模式。在适于生理条件的ABO模型中,只观察到一种类型,因为不同于FHN模型,不会发生由于高频起搏引起的兴奋性的降低。如果在ABO模型中减少了兴奋性,则回收所有类型的不规则性,并且另外,发现进一步类型。因为从规则到不规则行为的转变取决于起搏频率,我们的研究结果为阵发性AF的现象提供了可能的解释。

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