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首页> 外文期刊>The European physical journal: Special topics >A model for oscillations and pattern formation in protoplasmic droplets of Physarum polycephalum
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A model for oscillations and pattern formation in protoplasmic droplets of Physarum polycephalum

机译:多头Phys草原生质液滴振荡和模式形成的模型

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摘要

A mechano-chemical model for the spatiotemporal dynamics of free calcium and the thickness in protoplasmic droplets of the true slime mold Physarum polycephalum is derived starting from a physiologically detailed description of intracellular calcium oscillations proposed by Smith and Saldana (Biopys. J. 61, 368 (1992)). First, we have modified the Smith-Saldana model for the temporal calcium dynamics in order to reproduce the experimentally observed phase relation between calcium and mechanical tension oscillations. Then, we formulate a model for spatiotemporal dynamics by adding spatial coupling in the form of calcium diffusion and advection due to calcium-dependent mechanical contraction. In another step, the resulting reaction-diffusion model with mechanical coupling is simplified to a reaction-diffusion model with global coupling that approximates the mechanical part. We perform a bifurcation analysis of the local dynamics and observe a Hopf bifurcation upon increase of a biochemical activity parameter. The corresponding reaction-diffusion model with global coupling shows regular and chaotic spatiotemporal behaviour for parameters with oscillatory dynamics. In addition, we show that the global coupling leads to a long-wavelength instability even for parameters where the local dynamics possesses a stable spatially homogeneous steady state. This instability causes standing waves with a wavelength of twice the system size in one dimension. Simulations of the model in two dimensions are found to exhibit defect-mediated turbulence as well as various types of spiral wave patterns in qualitative agreement with earlier experimental observation by Takagi and Ueda (Physica D, 237, 420 (2008)).
机译:从史密斯(Smith)和萨尔达娜(Saldana)提出的细胞内钙振荡的生理学详细描述出发,得出了一个真实的粘液霉菌多头um的游离钙时空动态和原生质小滴厚度的力学化学模型(Biopys.J.61,368 (1992))。首先,我们修改了时间钙动力学的Smith-Saldana模型,以便重现实验观察到的钙与机械张力振荡之间的相位关系。然后,我们通过添加钙耦合的机械收缩引起的钙扩散和对流形式的空间耦合,建立了时空动力学模型。在另一步骤中,将得到的具有机械耦合的反应扩散模型简化为具有近似于机械零件的整体耦合的反应扩散模型。我们执行局部动力学的分叉分析,并观察生化活性参数增加后的Hopf分叉。具有全局耦合的相应反应扩散模型显示出具有振动动力学参数的规则和混沌时空行为。此外,我们表明,即使对于局部动力学具有稳定的空间均匀稳态的参数,全局耦合也会导致长波不稳定性。这种不稳定性会导致一维波长为系统大小两倍的驻波。高维和上田的较早实验观察发现,该模型在二维上的模拟显示出缺陷介导的湍流以及各种类型的螺旋波模式(Physica D,237,420(2008))。

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