Kryukov A K, Petrov V S, Averyanova L S, Osipov G V, Chen W, Drugova O, Chan C K
Department of Control Theory, Nizhny Novgorod University, Gagarin Avenue, 23, 603950 Nizhny Novgorod, Russia.
Chaos. 2008 Sep;18(3):037129. doi: 10.1063/1.2956985.
We study collective phenomena in highly heterogeneous cardiac cell culture and its models. A cardiac culture is a mixture of passive (fibroblasts), oscillatory (pacemakers), and excitable (myocytes) cells. There is also heterogeneity within each type of cell as well. Results of in vitro experiments are modelled by Luo-Rudy and FitzHugh-Nagumo systems. For oscillatory and excitable media, we focus on the transitions from fully incoherent behavior to partially coherent behavior and then to global synchronization as the coupling strength is increased. These regimes are characterized qualitatively by spatiotemporal diagrams and quantitatively by profiles of dependence of individual frequencies on coupling. We find that synchronization clusters are determined by concentric and spiral waves. These waves arising due to the heterogeneity of medium push covered cells to oscillate in synchrony. We are also interested in the influence of passive and excitable elements on the oscillatory characteristics of low- and high-dimensional ensembles of cardiac cells. The mixture of initially silent excitable and passive cells shows the transitions to oscillatory behavior. In the media of oscillatory and passive or excitable cells, the effect of oscillation death is observed.
我们研究高度异质的心脏细胞培养物及其模型中的集体现象。心脏培养物是由被动细胞(成纤维细胞)、振荡细胞(起搏器细胞)和可兴奋细胞(心肌细胞)混合而成。而且每种类型的细胞内部也存在异质性。体外实验结果由Luo-Rudy和FitzHugh-Nagumo系统进行建模。对于振荡介质和可兴奋介质,我们关注随着耦合强度增加,从完全非相干行为到部分相干行为,再到全局同步的转变。这些状态通过时空图进行定性表征,并通过单个频率对耦合的依赖关系曲线进行定量表征。我们发现同步簇由同心波和螺旋波决定。由于介质的异质性而产生的这些波促使被覆盖的细胞同步振荡。我们还对被动和可兴奋元件对心脏细胞低维和高维集合体振荡特性的影响感兴趣。最初静止的可兴奋细胞和被动细胞的混合物表现出向振荡行为的转变。在振荡细胞与被动或可兴奋细胞的介质中,观察到了振荡死亡效应。