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Instability of spiral and scroll waves in the presence of a gradient in the fibroblast density: the effects of fibroblast–myocyte coupling

机译:在成纤维细胞密度存在梯度的情况下,螺旋波和涡旋波的不稳定性:成纤维细胞与肌细胞的耦合作用

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Download video View all New J. Phys. video abstracts Fibroblast–myocyte coupling can modulate electrical-wave dynamics in cardiac tissue. In diseased hearts, the distribution of fibroblasts is heterogeneous, so there can be gradients in the fibroblast density (henceforth we call this GFD) especially from highly injured regions, like infarcted or ischemic zones, to less-wounded regions of the tissue. Fibrotic hearts are known to be prone to arrhythmias, so it is important to understand the effects of GFD in the formation and sustenance of arrhythmic re-entrant waves, like spiral or scroll waves. Therefore, we investigate the effects of GFD on the stability of spiral and scroll waves of electrical activation in a state-of-the-art mathematical model for cardiac tissue in which we also include fibroblasts. By introducing GFD in controlled ways, we show that spiral and scroll waves can be unstable in the presence of GFDs because of regions with varying spiral- or scroll-wave frequency ω, induced by the GFD. We examine the effects of the resting membrane potential of the fibroblast and the number of fibroblasts attached to the myocytes on the stability of these waves. Finally, we show that the presence of GFDs can lead to the formation of spiral waves at high-frequency pacing.
机译:下载视频查看全部New J. Phys。视频摘要成纤维细胞与肌细胞的结合可以调节心脏组织中的电波动力学。在患病的心脏中,成纤维细胞的分布是不均匀的,因此成纤维细胞的密度(此后称为GFD)可能存在梯度,尤其是从高度受伤的区域(如梗塞或缺血区)到组织较不受伤的区域。众所周知,纤维化的心脏易于发生心律不齐,因此了解GFD对心律失常折返波(例如螺旋波或涡旋波)的形成和维持的影响非常重要。因此,我们在心脏组织的最新数学模型(其中还包括成纤维细胞)中研究了GFD对电激活螺旋波和涡旋波稳定性的影响。通过以受控方式引入GFD,我们显示出存在GFD时,由于GFD感应到的螺旋波或涡旋波频率ω变化的区域,螺旋波和涡旋波可能不稳定。我们检查了成纤维细胞的静息膜电位和附着在心肌细胞上的成纤维细胞数目对这些波稳定性的影响。最后,我们表明GFD的存在可以导致高频起搏时螺旋波的形成。

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