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Attraction and repulsion of spiral waves by inhomogeneity of conduction anisotropy-a model of spiral wave interaction with electrical remodeling of heart tissue

机译:传导各向异性的不均匀性引起螺旋波的吸引和排斥 - 螺旋波与心脏组织电重构的相互作用模型

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摘要

Various forms of heart disease are associated with remodeling of the heart muscle, which results in a perturbation of cell-to-cell electrical coupling. These perturbations may alter the trajectory of spiral wave drift in the heart muscle. We investigate the effect of spatially extended inhomogeneity of transverse cell coupling on the spiral wave trajectory using a simple active media model. The spiral wave was either attracted or repelled from the center of inhomogeneity as a function of cell excitability and gradient of the cell coupling. High levels of excitability resulted in an attraction of the wave to the center of inhomogeneity, whereas low levels resulted in an escape and termination of the spiral wave. The spiral wave drift velocity was related to the gradient of the coupling and the initial position of the wave. In a diseased heart, a region of altered transverse coupling corresponds with local gap junction remodeling that may be responsible for stabilization-destabilization of spiral waves and hence reflect potentially important targets in the treatment of heart arrhythmias.
机译:各种形式的心脏病都与心肌的重塑有关,这会导致细胞间电耦合的扰动。这些扰动可能会改变心肌中螺旋波漂移的轨迹。我们使用简单的主动介质模型研究横向单元耦合在空间上扩展的不均匀性对螺旋波轨迹的影响。螺旋波被异质性中心吸引或排斥,这是细胞兴奋性和细胞偶联梯度的函数。高水平的兴奋性导致波浪吸引到不均匀性中心,而低水平的兴奋性导致螺旋波逃逸并终止。螺旋波漂移速度与耦合梯度和波的初始位置有关。在患病的心脏中,横向耦合改变的区域对应于局部间隙连接重塑,其可能负责螺旋波的稳定化和稳定化,因此反映了在心律不齐的治疗中潜在的重要目标。

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