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An Experimental and Computational Analysis of Primary Cilia Deflection Under Fluid Flow

机译:流体流动下初级纤毛挠度的实验与计算分析

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摘要

In this work we have developed a novel model of the deflection of primary cilia experiencing fluid flow accounting for phenomena not previously considered. Specifically, we developed a large rotation formulation that accounts for rotation at the base of the cilium, the initial shape of the cilium and fluid drag at high deflection angles. We utilized this model to analyze full three dimensional datasets of primary cilia deflecting under fluid flow acquired with high-speed confocal microscopy. We found a wide variety of previously unreported bending shapes and behaviors. We also analyzed post-flow relaxation patterns. Results from our combined experimental and theoretical approach suggest that the average flexural rigidity of primary cilia might be higher than previously reported (). In addition our findings indicate the mechanics of primary cilia are richly varied and mechanisms may exist to alter their mechanical behavior.
机译:在这项工作中,我们开发了一种小型模型,偏心的偏转模型,体验了先前未考虑的现象的流体流量核算。具体地,我们开发了一种大的旋转配方,其考虑了纤毛基底的旋转,纤毛的初始形状和在高偏转角处的流体拖动。我们利用该模型分析用高速共聚焦显微镜获取的流体流动下的初级纤毛偏转的全三维数据集。我们发现了各种各样的先前未报告的弯曲形状和行为。我们还分析了流动后的松弛模式。我们的合并实验和理论方法的结果表明,原发性纤毛的平均弯曲刚度可能高于先前报道()。此外,我们的研究结果表明,原发性纤毛的机制是丰富的变化,可能存在机制来改变其机械行为。

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