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Two-Dimensional Continuum Percolation Threshold for Diffusing Particles of Nonzero Radius

机译:非零半径扩散粒子的二维连续渗流阈值

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摘要

Lateral diffusion in the plasma membrane is obstructed by proteins bound to the cytoskeleton. The most important parameter describing obstructed diffusion is the percolation threshold. The thresholds are well known for point tracers, but for tracers of nonzero radius, the threshold depends on the excluded area, not just the obstacle concentration. Here thresholds are obtained for circular obstacles on the continuum. Random obstacle configurations are generated by Brownian dynamics or Monte Carlo methods, the obstacles are immobilized, and the percolation threshold is obtained by solving a bond percolation problem on the Voronoi diagram of the obstacles. The percolation threshold is expressed as the diameter of the largest tracer that can cross a set of immobile obstacles at a prescribed number density. For random overlapping obstacles, the results agree with the known analytical solution quantitatively. When the obstacles are soft disks with a 1/r12 repulsion, the percolating diameter is ∼20% lower than for overlapping obstacles. A percolation model predicts that the threshold is highly sensitive to the tracer radius. To our knowledge, such a strong dependence has so far not been reported for the plasma membrane, suggesting that percolation is not the factor controlling lateral diffusion. A definitive experiment is proposed.
机译:与细胞骨架结合的蛋白质阻碍了质​​膜的横向扩散。描述阻塞扩散的最重要参数是渗透阈值。阈值对于点示踪剂是众所周知的,但是对于非零半径的示踪剂,阈值取决于排除的区域,而不仅仅是障碍物的浓度。在此获得连续体上圆形障碍物的阈值。通过布朗动力学或蒙特卡洛方法生成随机障碍物配置,固定障碍物,并通过解决障碍物的Voronoi图上的键渗漏问题获得渗流阈值。渗透阈值表示为可以以规定的数字密度穿过一组固定障碍物的最大示踪剂的直径。对于随机重叠的障碍物,结果在数量上与已知的分析解决方案一致。当障碍物是具有1 / r 12 排斥力的软盘时,渗透直径比重叠障碍物小约20%。渗透模型预测该阈值对示踪剂半径高度敏感。据我们所知,迄今为止还没有关于质膜的如此强烈的依赖性​​的报道,这表明渗透不是控制横向扩散的因素。提出了确定的实验。

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