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Damping Properties of the Hair Bundle

机译:发箍的阻尼性质

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The viscous liquid surrounding a hair bundle dissipates energy and dampens oscillations, which poses a fundamental physical challenge to the high sensitivity and sharp frequency selectivity of hearing. To identify the mechanical forces at play, we constructed a detailed finite-element model of the hair bundle. Based on data from the hair bundle of the bullfrog's sacculus, this model treats the interaction of stereocilia both with the surrounding liquid and with the liquid in the narrow gaps between the individual stereocilia. The investigation revealed that grouping stereocilia in a bundle dramatically reduces the total drag. During hair-bundle deflections, the tip links potentially induce drag by causing small but very dissipative relative motions between stereocilia; this effect is offset by the horizontal top connectors that restrain such relative movements at low frequencies. For higher frequencies the coupling liquid is sufficient to assure that the hair bundle moves as a unit with a low total drag. This work reveals the mechanical characteristics originating from hair-bundle morphology and shows quantitatively how a hair bundle is adapted for sensitive mechanotransduction.
机译:头发束周围的粘性液体消散了能量和潮湿的振荡,这对听力的高灵敏度和尖锐频率选择性构成了基本的身体挑战。为了识别戏剧的机械力,我们构建了发束的详细有限元模型。基于来自牛毛束的衰弱的数据,该模型对周围液体和液体在单个立体纤胺之间的狭窄间隙中的狭窄间隙中的相互作用。该调查显示,在束中分组立体纤胺显着降低了总阻力。在束束偏转期间,尖端链路可能通过导致立体纤胺之间的小而非常耗散的相对运动来引起拖曳;这种效果由水平顶部连接器偏移,其限制低频下的这种相对运动。对于较高的频率,耦合液足以确保头发束作为具有低总阻力的单元移动。这项工作揭示了源自毛发束形态的机械特性,并且定量地示出了毛发束适用于敏感机电站。

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