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Numerical study of the phase separation in binary lipid membrane containing protein inclusions under stationary shear flow.

机译:稳态剪切流下含蛋白质包裹体的二元脂质膜相分离的数值研究。

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摘要

The phase separation of lipids is believed to be responsible for the formation of lipid rafts in biological cell membrane. In the present work, a continuum model and a particle model are constructed to study the phase separation in binary lipid membrane containing inclusions under stationary shear flow. In each model, employing the cell dynamical system (CDS) approach, the kinetic equations of the confusion-advection process are numerically solved. Snapshot figures of the phase morphology are performed to intuitively display such phase evolving process. Considering the effects from both the inclusions and the shear flow, the time growth law of the characteristic domain size is discussed.
机译:脂质的相分离被认为是造成生物细胞膜中脂质筏的形成的原因。在目前的工作中,建立了一个连续模型和一个颗粒模型来研究在固定剪切流下含杂质的二元脂质膜中的相分离。在每个模型中,采用单元动力学系统(CDS)方法,数值求解了对流平流过程的动力学方程。执行相形态的快照图以直观地显示这种相演化过程。考虑到夹杂物和剪切流的影响,讨论了特征域尺寸的时间增长规律。

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