首页> 外文会议>2010 Computers in Cardiology >Wavefront-obstacle and wavefront-wavefront interactions as mechanisms for atrial fibrillation: A study based on the FitzHugh-Nagumo equations
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Wavefront-obstacle and wavefront-wavefront interactions as mechanisms for atrial fibrillation: A study based on the FitzHugh-Nagumo equations

机译:波前-障碍和波前-波前相互作用作为房颤的机制:基于FitzHugh-Nagumo方程的研究

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We investigate generating mechanisms of atrial fibrillation (AF) based on numerical solutions of the FitzHugh-Nagumo equations. In particular, the interaction of reentrant wavefronts with obstacles, modeled as tissue with gradually reduced excitability, is presented. We show that with increasing modification strength, the spatio-temporal characteristics of the wave changes from functional to anatomical reentry. With decreasing distance of the obstacle to a non-conducting boundary, a transition is observed from a stable spiral to a transient reentrant wave with two to three reentries up to a suppression of reentries. We further study the possibility to generate irregular, fibrillatory patterns by the perturbation of regularly paced waves by a second pacemaker. The irregularity depends on the perturbation frequency and the geometry of the simulation area and is quantified in terms of a Shannon entropy.
机译:我们根据FitzHugh-Nagumo方程的数值解来研究心房颤动(AF)的产生机理。特别是,提出了折返波前与障碍物之间的相互作用,建模为具有逐渐降低的兴奋性的组织。我们表明,随着修改强度的增加,波的时空特征从功能折返变为解剖折返。随着障碍物到非导电边界的距离的减小,观察到从稳定螺旋到具有两个到三个再入的瞬态再入波的过渡,直到抑制再入。我们进一步研究了由第二个起搏器对定期起搏的波进行扰动而产生不规则的,颤动性模式的可能性。不规则性取决于扰动频率和模拟区域的几何形状,并根据香农熵来量化。

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