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Relative stereociliary motion in a hair bundle opposes amplification at distortion frequencies

机译:发束中的相对纤毛运动反对在畸变频率下放大

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Direct gating of mechanoelectrical transduction channels by mechanical force is a basic feature of hair cells that assures fast transduction and underpins the mechanical amplification of acoustic inputs, but the associated non-linearity - the gating compliance - inevitably distorts signals. Because reducing distortion would make the ear a better detector, we sought mechanisms with that effect. Mimickingin vivostimulation, we used stiff probes to displace individual hair bundles at physiological amplitudes and measured the coherence and phase of the relative stereociliary motions with a dual-beam differential interferometer. Although stereocilia moved coherently and in phase at the stimulus frequencies, large phase lags at the frequencies of the internally generated distortion products indicated dissipative relative motions. Tip links engaged these relative modes and decreased the coherence in both stimulated and free hair bundles. These results show that a hair bundle breaks into a highly dissipative serial arrangement of stereocilia at distortion frequencies, precluding their amplification.
机译:通过机械力对机电转换通道进行直接门控是毛细胞的基本功能,可确保快速转换并支持声输入的机械放大,但相关的非线性(门控顺应性)不可避免地会使信号失真。因为减少失真会使耳朵成为更好的检测器,所以我们寻求具有这种效果的机制。为模拟刺激,我们使用刚性探针以生理振幅置换单个发束,并使用双光束差动干涉仪测量相对立体纤毛运动的相干性和相位。尽管立体纤毛在刺激频率处相干且同相移动,但内部产生的失真产物的频率处的较大相位滞后表明存在耗散的相对运动。尖端链接参与了这些相对模式,并降低了刺激发束和自由发束的连贯性。这些结果表明,发束在畸变频率处分解成高度耗散的纤毛串行排列,从而阻止了它们的放大。

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