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Generation and Escape of Local Waves from the Boundary of Uncoupled Cardiac Tissue

机译:从未耦合心脏组织的边界产生和逸出局部波

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摘要

We aim to understand the formation of abnormal waves of activity from myocardial regions with diminished cell-to-cell coupling. En route to this goal, we studied the behavior of a heterogeneous myocyte network in which a sharp coupling gradient was placed under conditions of increasing network automaticity. Experiments were conducted in monolayers of neonatal rat cardiomyocytes using heptanol and isoproterenol as means of altering cell-to-cell coupling and automaticity, respectively. Experimental findings were explained and expanded using a modified Beeler-Reuter numerical model. The data suggest that the combination of a heterogeneous substrate, a gradient of coupling, and an increase in oscillatory activity of individual cells creates a rich set of behaviors associated with self-generated spiral waves and ectopic sources. Spiral waves feature a flattened shape and a pin-unpin drift type of tip motion. These intercellular waves are action-potential based and can be visualized with either voltage or calcium transient measurements. A source/load mismatch on the interface between the boundary and well-coupled layers can lock wavefronts emanating from both ectopic sources and rotating waves within the inner layers of the coupling gradient. A numerical approach allowed us to explore how 1), the spatial distribution of cells, 2), the amplitude and dispersion of cell automaticity, and 3), the speed at which the coupling gradient moves in space affect wave behavior, including its escape into well-coupled tissue.
机译:我们旨在了解减少细胞间耦合的心肌区域异常活动波的形成。在实现这一目标的过程中,我们研究了异质性肌细胞网络的行为,其中在网络自动化程度不断提高的情况下,存在急剧的耦合梯度。在新生大鼠心肌细胞单层中分别使用庚醇和异丙肾上腺素作为改变细胞间偶联和自动性的手段进行了实验。使用改进的Beeler-Reuter数值模型对实验结果进行了解释和扩展。数据表明,异质底物,偶联梯度和单个细胞振荡活性增加的组合产生了与自生螺旋波和异位源相关的丰富行为。螺旋波具有平坦的形状和销钉松开式尖端运动。这些细胞间波是基于动作电位的,可以通过电压或钙瞬变测量显示。边界层和耦合良好的层之间的界面上的源/负载不匹配会锁定从异位源发出的波前以及耦合梯度内层中的旋转波。数值方法使我们能够探索1),单元的空间分布,2),单元自动性的幅度和分散度以及3),耦合梯度在空间中移动的速度如何影响波行为,包括其逃逸到耦合良好的组织。

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