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Nano-swimmers in biological membranes and propulsion hydrodynamics in two dimensions

机译:二维生物膜中的纳米游泳器和推进流体动力学

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Active protein inclusions in biological membranes can represent nano-swimmers and propel themselves in lipid bilayers. A simple model of an active inclusion with three particles (domains) connected by variable elastic links is considered. First, the membrane is modeled as a two-dimensional viscous fluid and propulsion behavior in two dimensions is examined. After that, an example of a microscopic dynamical simulation is presented, where the lipid bilayer structure of the membrane is resolved and the solvent effects are included by multiparticle collision dynamics. Statistical analysis of data reveals ballistic motion of the swimmer, in contrast to the classical diffusion behavior found in the absence of active transitions between the states.
机译:生物膜中的活性蛋白质包裹体可以代表纳米游泳者,并在脂质双层中推动自身。考虑了一个简单的主动包含物模型,其中包含通过可变弹性链接连接的三个粒子(域)。首先,将膜建模为二维粘性流体,并检查二维的推进行为。之后,给出了微观动力学模拟的示例,其中解析了膜的脂质双层结构,并且多颗粒碰撞动力学包括了溶剂效应。数据的统计分析揭示了游泳者的弹道运动,这与在状态之间不存在主动过渡的情况下发现的经典扩散行为相反。

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