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Effectiveness of Hair Bundle Motility as the Cochlear Amplifier

机译:发束动力作为耳蜗放大器的功效

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摘要

The effectiveness of hair bundle motility in mammalian and avian ears is studied by examining energy balance for a small sinusoidal displacement of the hair bundle. The condition that the energy generated by a hair bundle must be greater than energy loss due to the shear in the subtectorial gap per hair bundle leads to a limiting frequency that can be supported by hair-bundle motility. Limiting frequencies are obtained for two motile mechanisms for fast adaptation, the channel re-closure model and a model that assumes that fast adaptation is an interplay between gating of the channel and the myosin motor. The limiting frequency obtained for each of these models is an increasing function of a factor that is determined by the morphology of hair bundles and the cochlea. Primarily due to the higher density of hair cells in the avian inner ear, this factor is ∼10-fold greater for the avian ear than the mammalian ear, which has much higher auditory frequency limit. This result is consistent with a much greater significance of hair bundle motility in the avian ear than that in the mammalian ear.
机译:通过检查发束的小正弦位移的能量平衡,研究了发束运动在哺乳动物和禽耳中的有效性。发束产生的能量必须大于能量损失的条件,这是由于每个发束的下胚层间隙中的剪切力导致的极限频率可以由发束运动性支持。获得了两种用于快速适应的运动机制的极限频率,即通道重闭合模型和一种假设快速适应是通道门控和肌球蛋白马达之间相互作用的模型。从这些模型中的每个模型获得的极限频率是由发束和耳蜗的形态决定的因子的递增函数。主要是由于禽类内耳中毛细胞的密度较高,因此禽类耳的这个因子比哺乳动物耳大约10倍,而哺乳动物耳具有更高的听觉频率极限。该结果与禽耳朵中的发束运动性比哺乳动物耳朵中的发束运动性具有更大的意义相一致。

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