Iwasa Kuni H
bioRxiv. 2025 Aug 2:2025.08.02.668240. doi: 10.1101/2025.08.02.668240.
Outer hair cells (OHCs) are essential for the sensitivity and frequency specificity of the mammalian ear. To perform this function, OHCs need to amplify the motion of the basilar membrane, which is much stiffer than themselves. OHCs must overcome this impedance mismatch for their amplifying function particularly at high frequencies, where the mismatch is largest. This issue could be solved by the existence of multiple modes of motion. Here, systems of two coupled oscillators are examined as the simplest of such cases. It is found that some of these model systems indeed make OHCs function as an effective amplifier by overcoming the impedance mismatch. This result suggests that the elaborate structure of the organ of Corti, which can support multiple modes of motion, is a key to the high frequency performance of the mammalian ear.
The mammalian ear depends on outer hair cells, which work as the cochlear amplifier. The mechanism, with which outer hair cells perform this biological function, is of great interest. The present paper addresses a question, how soft outer hair cells can amplify the vibration of the much stiffer basilar membrane. It shows that the elaborate structure of the cochlea, which supports multiple modes of motion, must be a key to the exquisite performance of the mammalian ear. It also shows that the properties of outer hair cells obtained from isolated cell preparations are compatible with their physiological function.
外毛细胞(OHCs)对于哺乳动物耳朵的灵敏度和频率特异性至关重要。为了执行此功能,外毛细胞需要放大基底膜的运动,而基底膜比它们自身硬得多。外毛细胞必须克服这种阻抗失配才能实现其放大功能,特别是在高频时,此时失配最大。这个问题可以通过存在多种运动模式来解决。在此,研究了两个耦合振荡器系统作为此类最简单的情况。发现其中一些模型系统确实通过克服阻抗失配使外毛细胞起到有效放大器的作用。这一结果表明,能够支持多种运动模式的柯蒂氏器的精细结构是哺乳动物耳朵高频性能的关键。
哺乳动物的耳朵依赖于作为耳蜗放大器的外毛细胞。外毛细胞执行这种生物学功能的机制备受关注。本文解决了一个问题,即柔软的外毛细胞如何放大硬得多的基底膜的振动。它表明,支持多种运动模式的耳蜗精细结构必定是哺乳动物耳朵卓越性能的关键。它还表明,从分离的细胞制剂中获得的外毛细胞特性与其生理功能相符。