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Initiation of Rotors by Fast Propagation Regions in Excitable Media: A Theoretical Study

机译:介质中快速传播区域引发转子的理论研究

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We study the effect of geometry of a fast propagation region (FPR) in an excitable medium on the rotor initiation using a generic two-dimensional reaction-diffusion model. We find that, while the flat boundary of a rectangularly shaped FPR may block the propagation of the excitation wave, a large local curvature at the rounded corners of the FPR would prevent the blockage and thus initiate a rotor. Our simulations demonstrate that the prerequisites for the rotor initiation are the degree of the heterogeneity, its shape and size. These results may explain the incidence of arrhythmias by local heterogeneities induced, for example, by a cardiac tissue remodeling.
机译:我们使用通用的二维反应扩散模型研究了可激发介质中快速传播区域(FPR)的几何形状对转子启动的影响。我们发现,虽然矩形FPR的平坦边界可能会阻止激励波的传播,但FPR圆角处的较大局部曲率会阻止该阻塞,从而启动转子。我们的仿真表明,转子起爆的先决条件是异质性的程度,形状和大小。这些结果可以解释由局部异质性引起的心律不齐的发生,例如由心脏组织重塑引起的。

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