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首页> 外文期刊>Journal of Neurophysiology >Cochlear outer-hair-cell efferents and complex-sound-induced hearing loss: protective and opposing effects.
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Cochlear outer-hair-cell efferents and complex-sound-induced hearing loss: protective and opposing effects.

机译:耳蜗外毛细胞传出和复杂声音引起的听力损失:保护作用和对立作用。

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摘要

Centrifugal crossed and uncrossed medial olivocochlear systems (CMOCS and UMOCS) terminate on cochlear outer hair cells (OHCs) and exercise effects through a nicotinic cholinergic receptor. Hence their cochlear effects have not been differentiated. Recent work on protection from loud-sound-induced temporary threshold shifts (TTSs) in hearing sensitivity suggest the two OHC efferent systems may act differently. This was tested, using traumatic complex sound, to determine if such sound could activate both MOCS components and then reveal whether they exerted different effects on TTSs to such stimuli. Traumatic noise bands activated crossed and uncrossed MOCS efferents. Two different CMOCS effects were observed. For frequencies in the noise (within-band frequencies), it protected hearing sensitivity as expected. Novel findings were that at frequencies higher than the noise band range (high-side frequencies), it acted to worsen hearing sensitivity and that this was opposed by a UMOCS effect generally targeted to these frequency regions. It is proposed that the two crossed MOCS actions are extensions of a contrast-enhancement action for low-level noise bands. It is also proposed that the UMOCS plays a state-restoration role to prevent an undesired CMOCS side-effect of exacerbation of high-side TTSs to high-level noise bands.
机译:离心交叉和未交叉的内侧少毛神经系统(CMOCS和UMOCS)终止于耳蜗外毛细胞(OHC),并通过烟碱胆碱能受体发挥运动作用。因此,他们的耳蜗作用没有区别。最近关于防止大声引起的听觉敏感度临时阈值移位(TTS)的工作表明,这两种OHC传出系统的行为可能不同。使用创伤性复合声音对此进行了测试,以确定这种声音是否可以激活两个MOCS组件,然后揭示它们是否对TTS施加了不同的刺激作用。创伤性噪声带激活了交叉和未交叉的MOCS传出。观察到两种不同的CMOCS效应。对于噪声中的频率(带内频率),它可以按预期保护听觉灵敏度。新颖的发现是,在高于噪声频带范围的频率(高边频率)下,它会使听觉灵敏度变差,而通常针对这些频率区域的UMOCS效果则与之相反。建议两个交叉的MOCS动作是针对低级噪声频带的对比度增强动作的扩展。还提出,UMOCS起到状态恢复的作用,以防止将高端TTS恶化为高电平噪声带的不希望的CMOCS副作用。

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