Fogle Craig, Rowat Amy C, Levine Alex J, Rudnick Joseph
Department of Physics, UCLA, Los Angeles, California 90095-1596, USA.
Department of Integrative Biology and Physiology, UCLA, Los Angeles, California 90095, USA and Department of Bioengineering, UCLA, Los Angeles, California 90095, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Nov;88(5):052404. doi: 10.1103/PhysRevE.88.052404. Epub 2013 Nov 11.
We study elasticity-driven morphological transitions of soft spherical core-shell structures in which the core can be treated as an isotropic elastic continuum and the surface or shell as a tensionless liquid layer, whose elastic response is dominated by bending. To generate the transitions, we consider the case where the surface area of the liquid layer is increased for a fixed amount of interior elastic material. We find that generically there is a critical excess surface area at which the isotropic sphere becomes unstable to buckling. At this point it adopts a lower symmetry wrinkled structure that can be described by a spherical harmonic deformation. We study the dependence of the buckled sphere and critical excess area of the transition on the elastic parameters and size of the system. We also relate our results to recent experiments on the wrinkling of gel-filled vesicles as their interior volume is reduced. The theory may have broader applications to a variety of related structures from the macroscopic to the microscopic, including the wrinkling of dried peas, raisins, as well as the cell nucleus.
我们研究了软球形核壳结构的弹性驱动形态转变,其中核可视为各向同性弹性连续体,表面或壳层可视为无张力液体层,其弹性响应主要由弯曲主导。为了产生转变,我们考虑了在内部弹性材料量固定的情况下液体层表面积增加的情况。我们发现,一般来说,存在一个临界过剩表面积,在该表面积下,各向同性球体对屈曲变得不稳定。此时,它会采用一种对称性较低的褶皱结构,这种结构可以用球谐变形来描述。我们研究了屈曲球体和转变临界过剩面积对弹性参数和系统尺寸的依赖性。我们还将我们的结果与最近关于凝胶填充囊泡在内部体积减小时起皱的实验联系起来。该理论可能在从宏观到微观的各种相关结构中具有更广泛的应用,包括干豌豆、葡萄干的起皱以及细胞核。