首页> 外文期刊>The Journal of Physiology >Chick hair cells do not exhibit voltage-dependent somatic motility.
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Chick hair cells do not exhibit voltage-dependent somatic motility.

机译:小鸡毛细胞不表现出电压依赖性的体细胞运动性。

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摘要

It is generally believed that mechanical amplification by cochlear hair cells is necessary to enhance the sensitivity and frequency selectivity of hearing. In the mammalian ear, the basis of cochlear amplification is believed to be the voltage-dependent electromotility of outer hair cells (OHCs). The avian basilar papilla contains tall and short hair cells, with the former being comparable to inner hair cells, and the latter comparable to OHCs, based on their innervation patterns. In this study, we sought evidence for somatic electromotility by direct measurements of voltage-dependent length changes in both tall and short hair cells at nanometre resolution. Microchamber and whole-cell voltage-clamp techniques were used. Motility was measured with a photodiode-based measurement system. Non-linear capacitance, an electrical signature of somatic motility, was also measured to complement motility measurement. Significantly, chick hair cells did not exhibit somatic motility nor express non-linear capacitance. The lack of somatic motility suggests that in avian hair cells the active process resides elsewhere, most likely in the hair cell stereocilia.
机译:通常认为,通过耳蜗毛细胞进行机械放大对于增强听力的灵敏度和频率选择性是必要的。在哺乳动物的耳朵中,耳蜗放大的基础被认为是外毛细胞(OHC)的电压依赖性电动力。鸟类基底乳头包含高毛和短毛细胞,根据它们的神经支配方式,前者可与内部毛细胞媲美,而后者可与OHC相媲美。在这项研究中,我们通过以纳米分辨率直接测量高毛发细胞和短毛发细胞中电压相关的长度变化来寻找体细胞电动性的证据。使用微室和全细胞电压钳技术。用基于光电二极管的测量系统测量运动性。还测量了非线性电容,它是躯体运动的电信号,可以补充运动的测量结果。重要的是,雏鸡毛细胞既没有表现出躯体运动性,也没有表达非线性电容。体细胞运动的缺乏表明,在禽毛细胞中,活跃的过程位于其他地方,最有可能在毛细胞立体纤毛中。

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