Morphology of Active Deformable 3D Droplets

Liam J. Ruske, J. Yeomans
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引用次数: 17

Abstract

We numerically investigate the morphology and disclination line dynamics of active nematic droplets in three dimensions. Although our model only incorporates the simplest possible form of achiral active stress, active nematic droplets display an unprecedented range of complex morphologies. For extensile activity finger-like protrusions grow at points where disclination lines intersect the droplet surface. For contractile activity, however, the activity field drives cup-shaped droplet invagination, run-and-tumble motion or the formation of surface wrinkles. This diversity of behaviour is explained in terms of an interplay between active anchoring, active flows and the dynamics of the motile dislocation lines. We discuss our findings in the light of biological processes such as morphogenesis, collective cancer invasion and the shape control of biomembranes, suggesting that some biological systems may share the same underlying mechanisms as active nematic droplets.
活动可变形3D液滴的形态
本文用数值方法研究了主动向列型液滴的三维形态和斜向线动力学。虽然我们的模型只包含了最简单的非手性主动应力形式,但主动向列状液滴显示出前所未有的复杂形态。对于可拉伸活动,指状突起生长在斜线与液滴表面相交的点上。然而,对于收缩活动,活动场驱动杯状液滴内陷、奔跑和翻滚运动或表面皱纹的形成。这种行为的多样性可以用主动锚定、主动流动和运动错位线的动力学之间的相互作用来解释。我们从生物过程的角度讨论了我们的发现,如形态发生、集体癌症侵袭和生物膜的形状控制,表明一些生物系统可能与活性向列状液滴具有相同的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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