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Critical scale of propagation influences dynamics of waves in a model of excitable medium

机译:临界传播尺度影响可激发介质模型中的波动力学

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Background Duration and speed of propagation of the pulse are essential factors for stability of excitation waves. We explore the propagation of excitation waves resulting from periodic stimulation of an excitable cable to determine the minimal stable pulse duration in a rate-dependent modification of a Chernyak-Starobin-Cohen reaction-diffusion model. Results Various pacing rate dependent features of wave propagation were studied computationally and analytically. We demonstrated that the complexity of responses to stimulation and evolution of these responses from stable propagation to propagation block and alternans was determined by the proximity between the minimal level of the recovery variable and the critical excitation threshold for a stable solitary pulse. Conclusion These results suggest that critical propagation of excitation waves determines conditions for transition to unstable rhythms in a way similar to unstable cardiac rhythms. Established conditions were suitably accurate regardless of rate dependent features and the magnitude of the slopes of restitution curves.
机译:背景脉冲的持续时间和传播速度是激发波稳定性的重要因素。我们探讨了由周期性刺激的可激发电缆所产生的激励波的传播,以确定在Chernyak-Starobin-Cohen反应扩散模型的速率依赖性修改中的最小稳定脉冲持续时间。结果对波的各种起搏速率相关特征进行了计算和分析研究。我们证明了对刺激的响应的复杂性以及这些响应从稳定传播到传播阻滞和交替变化的演化是由恢复变量的最小水平与稳定孤立脉冲的临界激发阈值之间的接近程度决定的。结论这些结果表明,激发波的临界传播以与不稳定的心律相似的方式决定了过渡到不稳定的心律的条件。既定条件是适当准确的,而与速率相关特征和恢复曲线斜率的大小无关。

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