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首页> 外文期刊>The Journal of Chemical Physics >A second generation mesoscopic lipid bilayer model: Connections to field-theory descriptions of membranes and nonlocal hydrodynamics
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A second generation mesoscopic lipid bilayer model: Connections to field-theory descriptions of membranes and nonlocal hydrodynamics

机译:第二代介观脂质双层模型:与膜的现场理论描述和非局部流体动力学的联系

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摘要

A new mesoscopic membrane model is developed in order to examine long-wavelength structural and dynamical membrane phenomena.Two different explicit mesoscopic solvent models are employed.The first mesoscopic solvent is denoted the big liquid oscillating blob system,which is parametrized to model water at a coarse-grained level and is motivated by a Langevin-like approach;the resulting membrane dynamics predict a solvent viscosity dependence consistent with the known viscosity of water.The second mesoscopic solvent is a Weeks-Chandler-Anderson model.Here,it is found that the correct mesoscopic hydrodynamic scaling of the membrane undulation dynamics is still preserved,although accelerated.When the behavior of the two membranes in close proximity to one another is examined,very little correlated motion is observed.However,the theoretically predicted scaling of the entropic undulation energy is confirmed,demonstrating that the entropic interaction between two membranes becomes increasingly repulsive with decreasing separation.
机译:为了研究长波长结构和动态膜现象,开发了一种新的介观膜模型。采用了两种不同的显式介观溶剂模型。第一种介观溶剂表示为大液体振荡团块系统,其参数化用于模拟水在大气压下的流动。粗粒度水平,是由类似Langevin的方法驱动的;所得的膜动力学预测了与已知水粘度一致的溶剂粘度依赖性。第二个介观溶剂是Weeks-Chandler-Anderson模型。膜的起伏动力学的正确的介观流体动力学尺度仍然被保留,尽管被加速了。当检查两个彼此接近的膜的行为时,观察到很少的相关运动。但是,理论上预测的熵起伏的尺度能量被证实,表明两个膜之间的熵相互作用增加y随着分离的减少而排斥。

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