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在盘基网柄菌细胞中环磷酸腺苷信号传导模型中,细胞间耦合诱导的混沌及其他动力学转变的抑制

Suppression of chaos and other dynamical transitions induced by intercellular coupling in a model for cyclic AMP signaling in Dictyostelium cells.

作者信息

Li Y. X., Halloy J., Martiel J. L., Goldbeter A.

机构信息

Faculte des Sciences, Universite Libre de Bruxelles, Campus Plaine, C.P. 231, B-1050 Brussels, BelgiumDepartement d'Informatique, Faculte de Medecine, Universite de Grenoble, F-38700 La Tronche, FranceFaculte des Sciences, Universite Libre de Bruxelles, Campus Plaine, C.P. 231, B-1050 Brussels, Belgium.

出版信息

Chaos. 1992 Oct;2(4):501-512. doi: 10.1063/1.165892.

Abstract

The effect of intercellular coupling on the switching between periodic behavior and chaos is investigated in a model for cAMP oscillations in Dictyostelium cells. We first analyze the dynamic behavior of a homogeneous cell population which is governed by a three-variable differential system for which bifurcation diagrams are obtained as a function of two control parameters. We then consider the mixing of two populations behaving in a chaotic and periodic manner, respectively. Cells are coupled through the sharing of a common chemical intermediate, extracellular cAMP, which controls its production and release by the cells into the extracellular medium; the dynamics of the mixed suspension is governed by a five-variable differential system. When the two cell populations differ by the value of a single parameter which measures the activity of the enzyme that degrades extracellular cAMP, the bifurcation diagram established for the three-variable homogeneous population can be used to predict the dynamic behavior of the mixed suspension. The analysis shows that a small proportion of periodic cells can suppress chaos in the mixed suspension. Such a fragility of chaos originates from the relative smallness of the domain of aperiodic oscillations in parameter space. The bifurcation diagram is used to obtain the minimum fraction of periodic cells suppressing chaos. These results are related to the suppression of chaos by the small-amplitude periodic forcing of a strange attractor. Numerical simulations further show how the coupling of periodic cells with chaotic cells can produce chaos, bursting, simple periodic oscillations, or a stable steady state; the coupling between two populations at steady state can produce similar modes of dynamic behavior.

摘要

在盘基网柄菌细胞中环磷酸腺苷(cAMP)振荡模型中,研究了细胞间耦合对周期性行为与混沌之间转换的影响。我们首先分析了由一个三变量微分系统所支配的均匀细胞群体的动态行为,针对该系统,得到了作为两个控制参数函数的分岔图。然后,我们考虑分别表现出混沌和周期性行为的两个群体的混合情况。细胞通过共享一种共同的化学中间体——细胞外cAMP进行耦合,细胞外cAMP控制其产生并由细胞释放到细胞外介质中;混合悬浮液的动力学由一个五变量微分系统支配。当两个细胞群体在一个测量降解细胞外cAMP的酶活性的单一参数值上存在差异时,为三变量均匀群体建立的分岔图可用于预测混合悬浮液的动态行为。分析表明,一小部分周期性细胞能够抑制混合悬浮液中的混沌现象。这种混沌的脆弱性源于参数空间中非周期振荡域相对较小。利用分岔图获得抑制混沌的周期性细胞的最小比例。这些结果与通过奇异吸引子的小振幅周期强迫来抑制混沌有关。数值模拟进一步展示了周期性细胞与混沌细胞的耦合如何产生混沌、爆发、简单周期性振荡或稳定稳态;处于稳态的两个群体之间的耦合也能产生类似的动态行为模式。

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