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首页> 外文期刊>Journal of Neurophysiology >Response growth with sound level in auditory-nerve fibers after noise-induced hearing loss.
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Response growth with sound level in auditory-nerve fibers after noise-induced hearing loss.

机译:噪声诱发的听力损失后,听觉神经纤维中的响应水平随声音水平而增长。

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People with sensorineural hearing loss are often constrained by a reduced acoustic dynamic range associated with loudness recruitment; however, the neural correlates of loudness and recruitment are still not well understood. The growth of auditory-nerve (AN) activity with sound level was compared in normal-hearing cats and in cats with a noise-induced hearing loss to test the hypothesis that AN-fiber rate-level functions are steeper in impaired ears. Stimuli included best-frequency and fixed-frequency tones, broadband noise, and a brief speech token. Three types of impaired responses were observed. 1) Fibers with rate-level functions that were similar across all stimuli typically had broad tuning, consistent with outer-hair-cell (OHC) damage. 2) Fibers with a wide dynamic range and shallow slope above threshold often retained sharp tuning, consistent with primarily inner-hair-cell (IHC) damage. 3) Fibers with very steep rate-level functions for all stimuli had thresholds above approximately 80 dB SPL and very broad tuning, consistent with severe IHC and OHC damage. Impaired rate-level slopes were on average shallower than normal for tones, and were steeper in only limited conditions. There was less variation in rate-level slopes across stimuli in impaired fibers, presumably attributable to the lack of suppression-induced reductions in slopes for complex stimuli relative to BF-tone slopes. Sloping saturation was observed less often in impaired fibers. These results illustrate that AN fibers do not provide a simple representation of the basilar-membrane I/O function and suggest that both OHC and IHC damage can affect AN response growth.
机译:感觉神经性听力丧失的人通常受到与响度募集有关的声音动态范围减小的限制;然而,关于响度和募集的神经相关性仍未得到很好的理解。在正常听力的猫和有噪音引起的听力损失的猫中,比较了听觉神经(AN)活动与声音水平的增长,以检验在受损的耳朵中AN纤维速率水平功能较陡的假设。刺激包括最佳频率和固定频率音调,宽带噪声和简短的语音令牌。观察到三种类型的反应减弱。 1)具有速率水平功能的纤维在所有刺激中均相似,通常具有宽泛的调谐范围,与外毛细胞(OHC)损伤一致。 2)具有宽动态范围和高于阈值的浅斜率的光纤通常会保持剧烈的调谐,这主要与内部毛细胞(IHC)损坏相符。 3)对所有刺激具有非常陡峭的速率级别功能的光纤,其阈值大约高于80 dB SPL,并且调谐范围非常广,与严重的IHC和OHC损害相符。平均而言,受损的速率水平斜率比正常情况下的浅,并且仅在有限的条件下更陡。在受损的纤维中,跨刺激物的速率水平斜率变化较小,大概是由于相对于BF音调斜率,缺乏抑制诱导的复杂刺激物斜率降低所致。在受损的纤维中观察到倾斜饱和的频率较低。这些结果说明,AN纤维不能简单地表示基底膜I / O功能,并且表明OHC和IHC损伤均可影响AN反应的生长。

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