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Type II spiral ganglion afferent neurons drive medial olivocochlear reflex suppression of the cochlear amplifier

机译:II型螺旋神经节传入神经元驱动耳蜗放大器的内侧小耳反射反射抑制

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The dynamic adjustment of hearing sensitivity and frequency selectivity is mediated by the medial olivocochlear efferent reflex, which suppresses the gain of the ‘cochlear amplifier’ in each ear. Such efferent feedback is important for promoting discrimination of sounds in background noise, sound localization and protecting the cochleae from acoustic overstimulation. However, the sensory driver for the olivocochlear reflex is unknown. Here, we resolve this longstanding question using a mouse model null for the gene encoding the type III intermediate filament peripherin ( Prph) . Prph (?/?) mice lacked type II spiral ganglion neuron innervation of the outer hair cells, whereas innervation of the inner hair cells by type I spiral ganglion neurons was normal. Compared with Prph (+/+) controls, both contralateral and ipsilateral olivocochlear efferent-mediated suppression of the cochlear amplifier were absent in Prph (?/?) mice, demonstrating that outer hair cells and their type II afferents constitute the sensory drive for the olivocochlear efferent reflex.
机译:听力的灵敏度和频率选择性的动态调节是由内侧的小耳神经传出反射介导的,它抑制了每只耳朵中“耳蜗放大器”的增益。这种传出的反馈对于促进背景噪声中声音的辨别,声音定位以及保护耳蜗免受声学过度刺激很重要。然而,少毛反射的感觉驱动器是未知的。在这里,我们使用一个小鼠模型无效的编码III型中间丝外围蛋白(Prph)的基因来解决这个长期存在的问题。 Prph (?/?)小鼠缺乏外毛细胞的II型螺旋神经节神经元神经支配,而I型螺旋神经节神经元对内毛细胞的神经支配属正常。与Prph (+ / +)对照相比,Prph (?/?)小鼠均没有对侧和同侧小耳蜗传出介导的耳蜗放大器抑制作用。外毛细胞及其II型传入感受器构成了疏脂性神经递质反射的感觉驱动。

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