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Stress Concentration At the Base of Primary Cilium Due to Application of a Thin Elastic Layer

机译:由于施加薄的弹性层,原发性纤维碱的应力浓度

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Primary cilium is an organelle in approximately every cell in the body. It is believed to play a major role in sensing mechanical stimuli including shear strain exerted by fluid flow. In previous studies, researchers modeled this organelle as a cantilevered beam attached to the cell surface. In the present study we cast doubts on this assumption and modeled cilium in a way that cilium base was free to change direction so that a variable angle forms between cilium base and cell surface. This is done by application of a thin elastic layer with adjustable spring constant between bottom of the cilium and surface of the cell. In this case, extremely concentrated stress develop in small regions near the cilium base where a huge number of stretch-activated ion channels exist. From a biological point of view, this stress concentration effect brings about an enhanced and more sensitive primary cilium which is able to respond to minor stimuli.
机译:初级纤维是大约每个细胞中的细胞器。据信,在感测机械刺激中发挥重要作用,包括通过流体流动施加的剪切菌株。在以前的研究中,研究人员将该细胞器建模为连接到细胞表面的悬臂梁。在本研究中,我们在这种假设上阐述了纤毛纤西碱可自由改变方向的方式施放怀疑,使得纤毛基底和细胞表面之间的可变角度形成。这是通过施加薄的弹性层来完成具有可调节弹簧常数在纤毛和细胞表面之间的可调节弹簧常数来完成的。在这种情况下,极其浓缩的应力在纤毛基底附近的小区域中显影,其中存在大量的拉伸活化离子通道。从生物学的角度来看,这种应力集中效应产生了增强且更敏感的原发性纤毛,其能够应对轻微刺激。

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