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A Model for the Force Exerted on a Primary Cilium by an Optical Trap and the Resulting Deformation

机译:光学陷阱对初级Cilium施加的力及其变形的模型

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Cilia are slender flexible structures extending from the cell body; genetically similar to flagella. Although their existence has been long known, the mechanical and functional properties of non-motile (“primary”) cilia are largely unknown. Optical traps are a non-contact method of applying a localized force to microscopic objects and an ideal tool for the study of ciliary mechanics. We present a method to measure the mechanical properties of a cilium using an analytic model of a flexible, anchored cylinder held within an optical trap. The force density is found using the discrete-dipole approximation. Utilizing Euler-Bernoulli beam theory, we then integrate this force density and numerically obtain the equilibrium deformation of the cilium in response to an optical trap. The presented results demonstrate that optical trapping can provide a great deal of information and insight about the properties and functions of the primary cilium.
机译:纤毛是从细胞体延伸出来的细长的柔性结构。基因上与鞭毛相似。尽管它们的存在早已为人所知,但非活动性(“原发”)纤毛的机械和功能特性在很大程度上是未知的。光学陷阱是将局部力施加到微观对象的非接触方法,是研究睫状力学的理想工具。我们提出了一种方法,该方法使用保持在光阱内的柔性锚定圆柱体的解析模型来测量纤毛的机械性能。使用离散偶极近似法求出力密度。然后,利用Euler-Bernoulli光束理论,我们对该力密度进行积分,并通过数值方法获得了响应于光阱的纤毛的平衡变形。提出的结果表明,光捕获可以提供有关初级纤毛的特性和功能的大量信息和见解。

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