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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Statistical Modeling of an Optically Trapped Cilium
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APS -APS March Meeting 2017 - Event - Statistical Modeling of an Optically Trapped Cilium

机译:APS -APS 2017年3月会议-活动-光学捕获的Cilium的统计建模

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We explore, analytically and experimentally, the stochastic dynamics of a biologically significant slender microcantilever, the primary cilium, held within an optical trap. Primary cilia are cellular organelles, present on most vertebrate cells, hypothesized to function as a fluid flow sensor. The mechanical properties of a cilium remain incompletely characterized. Optical trapping is an ideal method to probe the mechanical response of a cilium due to the spatial localization and non-contact nature of the applied force. However, analysis of an optically trapped cilium is complicated both by the geometry of a cilium and boundary conditions. Here, we present experimentally measured mean-squared displacement data of trapped cilia where the trapping force is oppositely directed to the elastic restoring force of the ciliary axoneme, analytical modeling results deriving the mean-squared displacement of a trapped cilium using the Langevin approach, and apply our analytical results to the experimental data. We demonstrate that mechanical properties of the cilium can be accurately determined and efficiently extracted from the data using our model. It is hoped that improved measurements will result in deeper understanding of the biological function of cellular flow sensing by this organelle.
机译:我们在分析和实验上探索了生物学上显着的细长微悬臂梁(主要纤毛)的随机动力学,该悬臂梁位于光阱中。原发纤毛是存在于大多数脊椎动物细胞中的细胞器,被认为具有流体流量传感器的功能。纤毛的机械性能仍未完全表征。由于所施加的力的空间定位和非接触性质,光学捕获是探测纤毛机械响应的理想方法。但是,由于纤毛的几何形状和边界条件,对捕获的纤毛的分析都变得很复杂。在这里,我们提供了被困纤毛的实验测量的均方位移数据,其中捕获力与睫状轴突的弹性回复力相反,解析模型结果使用Langevin方法推导了被捕获纤毛的均方位移,以及将我们的分析结果应用于实验数据。我们证明,纤毛的机械性能可以使用我们的模型准确确定并从数据中有效提取。希望改进的测量结果将使该细胞器对细胞流量传感的生物学功能有更深入的了解。

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