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Metachronal waves in a chain of rowers with hydrodynamic interactions

机译:具有水动力相互作用的赛艇运动链中的次同步波

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摘要

Hair-like appendages called cilia on the surface of a microorganism such as Paramecium or Opalina beat highly synchronized and form so-called metachronal waves that travel along the surfaces. In order to study under what principal conditions these waves form, we introduce a chain of beads, called rowers, each periodically driven by an external force on a straight line segment. To implement hydrodynamic interactions between the beads, they are considered point-like. Two beads synchronize in antiphase or in phase depending on the positive or negative curvature of their driving-force potential. Concentrating on in-phase synchronizing rowers, we find that they display only transient synchronization in a bulk fluid. On the other hand, metachronal waves with wavelengths of 7-10 rower distances emerge, when we restrict the range of hydrodynamic interactions either artificially to nearest neighbors or by the presence of a bounding surface as in any relevant biological system.
机译:诸如草履虫或蛋白石等微生物表面上的称为纤毛的毛状附肢搏动高度同步,并形成沿表面传播的所谓的异时波。为了研究这些波在什么主要条件下形成,我们引入了一系列称为划船器的珠子,每个珠子都受到直线段上的外力的周期性驱动。为了实现小珠之间的流体动力相互作用,将它们视为点状。两个磁珠根据其驱动力的正曲率或负曲率反相或同相同步。专注于同相同步赛艇,我们发现它们在散装流体中仅显示瞬态同步。另一方面,当我们将流体动力相互作用的范围人为地限制到最近的邻居或由于存在任何相关生物系统中存在的边界面而将水动力相互作用的范围限制时,就会出现波长为7至10的划船者距离的超同步波。

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