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Dispersion relation in oscillatory reaction-diffusion systems with self-consistent flow in true slime mold.

机译:真实粘液霉菌中具有自洽流动的振荡反应扩散系统中的色散关系。

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摘要

In the large amoeboid organism Physarum, biochemical oscillators are spatially distributed throughout the organism and their collective motion exhibits phase waves, which carry physiological signals. The basic nature of this wave behaviour is not well-understood because, to date, an important effect has been neglected, namely, the shuttle streaming of protoplasm which accompanies the biochemical rhythms. Here we study the effects of self-consistent flow on the wave behaviour of oscillatory reaction-diffusion models proposed for the Physarum plasmodium, by means of numerical simulation for the dispersion relation and weakly nonlinear analysis for derivation of the phase equation. We conclude that the flow term is able to increase the speed of phase waves (similar to elongation of wave length). We compare the theoretical consequences with real waves observed in the organism and also point out the physiological roles of these effects on control mechanisms of intracellular communication.
机译:在大型变形虫生物体Physarum中,生化振荡器在空间上分布在整个生物体中,它们的集体运动表现出相波,该相波携带生理信号。这种波浪行为的基本性质尚未得到很好的理解,因为迄今为止,一个重要的影响被忽略了,即伴随生化节律的原生质的穿梭流。在这里,我们通过对色散关系的数值模拟和对相位方程的推导的弱非线性分析,研究了自洽流对为Physarum疟原虫提出的振荡反应扩散模型的波动行为的影响。我们得出结论,流动项能够提高相波的速度(类似于波长的延长)。我们将理论结果与在生物体中观察到的真实波进行比较,并指出这些影响对细胞内通讯控制机制的生理作用。

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