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囊泡黏附的温度依赖性。

Temperature dependence of vesicle adhesion.

作者信息

Gruhn Thomas, Lipowsky Reinhard

机构信息

Max-Planck-Institut für Kolloid- und Grenzflächenforschung, 14424 Potsdam, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Jan;71(1 Pt 1):011903. doi: 10.1103/PhysRevE.71.011903. Epub 2005 Jan 12.

Abstract

The influence of thermal fluctuations on the adhesion behavior of fluid vesicles is investigated with the help of Monte Carlo simulations. The adhesion area A(ad) of a fluid vesicle adhering to a smooth attractive substrate is studied systematically for different values of temperature, adhesion strength, and potential range. For low temperatures T , the ratio A(ad) /A between the adhesion area and the total area A of the vesicle is a linear function of T/kappa , where kappa is the bending rigidity. Linear fits of the simulation data allow an extrapolation to T=0 which corresponds well with data obtained from a simplified analytic model. A new ansatz for A(ad) (T) which is based on the eigenmodes of the adhering vesicle explains the linear behavior of A(ad) (T) for low T and helps to define a fit function which reproduces the linear behavior of the obtained simulation data. This fit function may be used in order to determine the bending rigidity and the adhesion strength from the observed adhesion geometry.

摘要

借助蒙特卡罗模拟研究了热涨落对流体囊泡粘附行为的影响。针对不同的温度、粘附强度和势范围,系统地研究了附着在光滑吸引性基底上的流体囊泡的粘附面积(A(ad))。对于低温(T),囊泡的粘附面积与总面积(A)之比(A(ad)/A)是(T / \kappa)的线性函数,其中(\kappa)是弯曲刚度。模拟数据的线性拟合允许外推到(T = 0),这与从简化解析模型获得的数据非常吻合。基于附着囊泡的本征模对(A(ad)(T))的新假设解释了低温下(A(ad)(T))的线性行为,并有助于定义一个拟合函数,该函数可重现所获得模拟数据的线性行为。此拟合函数可用于根据观察到的粘附几何形状确定弯曲刚度和粘附强度。

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