Li Jianfeng, Zhang Hongdong, Qiu Feng, Shi An-Chang
The State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Fudan University, Shanghai 200433, China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jul;88(1):012719. doi: 10.1103/PhysRevE.88.012719. Epub 2013 Jul 17.
The transition between two basic structures, a disk and an enclosed vesicle, of a finite membrane is studied by examining the minimum energy path (MEP) connecting these two states. The MEP is constructed using the string method applied to continuum elastic membrane models. The results reveal that, besides the commonly observed disk and vesicle, open vesicles (bowl-shaped vesicles or vesicles with a pore) can become stable or metastable shapes. The emergence, stability, and probability distribution of these open vesicles are analyzed. It is demonstrated that open vesicles can be stabilized by higher-order elastic energies. The estimated probability distribution of the different structures is in good agreement with available experiments.
通过研究连接有限膜的两种基本结构(盘状和封闭囊泡)的最小能量路径(MEP),对这两种结构之间的转变进行了研究。使用应用于连续弹性膜模型的弦方法构建了MEP。结果表明,除了常见的盘状和囊泡外,开放囊泡(碗状囊泡或有孔囊泡)可以成为稳定或亚稳态形状。分析了这些开放囊泡的出现、稳定性和概率分布。结果表明,开放囊泡可以通过高阶弹性能量来稳定。不同结构的估计概率分布与现有实验结果吻合良好。