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Motor Noise in Outer Hair Cells

机译:外毛细胞的电机噪音

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摘要

Outer hair cells in the mammalian ear has a membrane based motor which directly converts electrical energy into mechanical energy. Such a motor is associated with the function of these cells in providing feedback to vibration in the inner ear. To obtain insights into the motor mechanism, we examined kinetics of charge transfer across the membrane in two different modes. One is to monitor charge transfer induced by changes in the membrane potential as an excess membrane capacitance. The other is to measure spontaneous flip-flops of charges across the membrane under voltage clamp condition as current noise. The noise spectrum of current was inverse Lorentzian and the capacitance was Lorentzian as theoretically expected. The characteristic frequency of the capacitance was about 10 kHz and that for current noise was about 30 kHz. This result is inconsistent with the prediction. The difference can be explained by a reciprocal effect of being a piezoelectric motor in that mechanical motion which is subjected to friction affects the frequency response.
机译:哺乳动物耳中的外毛细胞具有基于膜的电动机,该电动机直接将电能转化为机械能。这种电动机与这些电池在内耳中提供反馈以振动的功能相关联。为了获得电机机制的见解,我们将在两种不同模式中检查过膜的电荷转移动力学。一种是监测通过膜电位变化引起的电荷转移作为过量膜电容。另一个是在电压钳位条件下测量穿过膜的自发触发电荷作为电流噪声。电流的噪声谱是逆洛伦卓,电容是洛伦兹的理论预期。电容的特征频率约为10kHz,电流噪声约为30kHz。该结果与预测不一致。差异可以通过作为压电电动机的互易效应来解释,该电动机在经受摩擦的机械运动影响频率响应。

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