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Diversity of temporal self-organized behaviors in a biochemical system.

机译:生化系统中时间自组织行为的多样性。

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The numerical study of a glycolytic model formed by a system of three delay-differential equations revealed a notable richness of temporal structures which included the three main routes to chaos, as well as a multiplicity of stable coexisting states. The Feigenbaum, intermitency and quasiperiodicity routes to chaos can emerge in the biochemical oscillator. Moreover, different types of birhythmicity, trirhythmicity and hard excitation emerge in the phase space. For a single range of the control parameter it can be observed the coexistence of two quasiperiodicity routes to chaos, the coexistence of a stable steady state with a stable torus, and the coexistence of a strange attractor with different stable regimes such as chaos with different periodic regimes, chaos with bursting behavior, and chaos with torus. In most of the numerical studies, the biochemical oscillator has been considered under periodic input flux being the mean input flux rate 6 mM/h. On the other hand, several investigators have observed quasiperiodic time patterns and chaotic oscillations by monitoring the fluorescence of NADH in glycolyzing yeast under sinusoidal glucose input flux. Our numerical results match well with these experimental studies.
机译:由三个时滞-微分方程组形成的糖酵解模型的数值研究表明,时间结构具有显着的丰富性,其中包括三个通往混沌的主要途径,以及多个稳定的共存状态。 Feigenbaum,间歇性和准周期性的路径可能会在生化振荡器中出现。此外,在相空间中出现了不同类型的双节律性,三节律性和硬激发。对于单个控制参数范围,可以观察到两条拟周期到混沌的共存,稳定稳态与稳定环的共存,以及具有不同稳定状态的奇怪吸引子的共存,例如具有不同周期性的混沌政权,行为突如其来的混乱,以及圆环的混乱。在大多数数值研究中,已经将生化振荡器视为周期性输入通量为平均输入通量速率6 mM / h。另一方面,一些研究者通过在正弦葡萄糖输入流量下监测糖化酵母中NADH的荧光,观察了准周期时间模式和混沌振荡。我们的数值结果与这些实验研究非常吻合。

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