De Magistris G, Tiribocchi A, Whitfield C A, Hawkins R J, Cates M E, Marenduzzo D
SUPA, School of Physics and Astronomy, University of Edinburgh, Mayfield Road, Edinburgh EH9 3JZ, UK.
Soft Matter. 2014 Oct 21;10(39):7826-37. doi: 10.1039/c4sm00937a. Epub 2014 Aug 26.
We study by computer simulations the dynamics of a droplet of passive, isotropic fluid, embedded in a polar active gel. The latter represents a fluid of active force dipoles, which exert either contractile or extensile stresses on their surroundings, modelling for instance a suspension of cytoskeletal filaments and molecular motors. When the polarisation of the active gel is anchored normal to the droplet at its surface, the nematic elasticity of the active gel drives the formation of a hedgehog defect; this defect then drives an active flow which propels the droplet forward. In an extensile gel, motility can occur even with tangential anchoring, which is compatible with a defect-free polarisation pattern. In this case, upon increasing activity the droplet first rotates uniformly, and then undergoes a discontinuous nonequilibrium transition into a translationally motile state, powered by bending deformations in the surrounding active medium.
我们通过计算机模拟研究了嵌入极性活性凝胶中的被动、各向同性流体微滴的动力学。后者代表一种活性力偶极流体,它会对周围环境施加收缩或拉伸应力,例如模拟细胞骨架细丝和分子马达的悬浮液。当活性凝胶的极化在微滴表面垂直锚定时,活性凝胶的向列弹性会驱动刺猬缺陷的形成;然后这个缺陷会驱动一个活性流,推动微滴向前。在拉伸凝胶中,即使是切向锚定也能产生运动性,这与无缺陷的极化模式是兼容的。在这种情况下,随着活性增加,微滴首先均匀旋转,然后经历不连续的非平衡转变,进入由周围活性介质中的弯曲变形驱动的平移运动状态。