首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Complex-periodic spiral waves in confluent cardiac cell cultures induced by localized inhomogeneities
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Complex-periodic spiral waves in confluent cardiac cell cultures induced by localized inhomogeneities

机译:局部不均匀性引起的汇合心肌细胞培养物中的复周期螺旋波

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Spatiotemporal wave activities in excitable heart tissues have long been the subject of numerous studies because they underlie different forms of cardiac arrhythmias. In particular, understanding the dynamics and the instabilities of spiral waves have become very important because they can cause reentrant tachycardia and their subsequent transitions to fibrillation. Although many aspects of cardiac spiral waves have been investigated through experiments and model simulations, their complex properties are far from well understood. Here, we show that intriguing complex-periodic (such as period-2, period-3, period-4, or aperiodic) spiral wave states can arise in monolayer tissues of cardiac cell culture in vitro, and demonstrate that these different dynamic states can coexist with abrupt and spontaneous transitions among them without any change in system parameters; in other words, the medium supports multistability. Based on extensive image data analysis, we have confirmed that these spiral waves are driven by their tips tracing complex orbits whose unusual, meandering shapes are formed by delicate interplay between localized conduction blocks and nonlinear properties of the culture medium.
机译:长期以来,可兴奋心脏组织中的时空波活动一直是许多研究的主题,因为它们是心律失常的不同形式的基础。特别是,了解螺旋波的动力学和不稳定性已经变得非常重要,因为它们会导致折返性心动过速及其随后的过渡为原纤维形成。尽管已经通过实验和模型仿真研究了心脏螺旋波的许多方面,但它们的复杂特性远未得到很好的理解。在这里,我们显示出有趣的复杂周期(如period-2,period-3,period-4或非周期性)螺旋波状态可以在体外心脏细胞培养的单层组织中出现,并证明了这些不同的动态状态可以它们之间突然并自发地并存,而系统参数没有任何变化;换句话说,该介质支持多重稳定性。基于大量的图像数据分析,我们已经确认,这些螺旋波是由其尖端跟踪复杂轨道驱动的,这些轨道的异常曲折形状是由局部传导块与培养基的非线性特性之间的微妙相互作用形成的。

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