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DIMENSIONAL REDUCTION OF A MULTISCALE CONTINUUM MODEL OF MICROTUBULE GLIDING ASSAYS

机译:微管滑行检验的多尺度连续模型的维降

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摘要

Microtubule gliding assays, in which molecular motors anchored to a plate drive the gliding motion of filaments in a quasi-two-dimensional fluid layer, have been shown to organize into a variety of large-scale patterns. We derive a fully three-dimensional multiscale coarse-grained model of a gliding assay including the evolution of densities of rigid filaments, bound motors, and free motors, coupled to fluid equations. Our model combines continuum theories of polymeric liquids with the force spreading approach of the immersed boundary method. We use dimensional and asymptotic analysis to derive a reduced two-dimensional model and show that, to leading order, the filaments evolve in a plane, similar to what is experimentally observed. We simulate our model numerically with a GPU-based implementation and observe the same qualitative behavior as in experimental work.
机译:已经显示出微管滑动试验,其中锚定在板上的分子电动机驱动准二维流体层中细丝的滑动运动,已组织成各种大规模模式。我们导出了滑移分析的完整三维多尺度粗粒度模型,包括刚性细丝,束缚电动机和自由电动机的密度的演化,并耦合到流体方程。我们的模型将聚合物液体的连续理论与沉浸边界方法的力扩散方法结合在一起。我们使用维数和渐近分析得出简化的二维模型,并显示,按照先导顺序,细丝在平面内演化,与实验观察到的相似。我们使用基于GPU的实现对模型进行数值模拟,并观察到与实验工作相同的定性行为。

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