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首页> 外文期刊>Hearing Research: An International Journal >Amplitude-modulation detection by recreational-noise-exposed humans with near-normal hearing thresholds and its medium-term . progression
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Amplitude-modulation detection by recreational-noise-exposed humans with near-normal hearing thresholds and its medium-term . progression

机译:具有接近正常听觉阈值的娱乐噪声暴露人群的调幅检测及其中期进展

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Noise exposure can affect the functioning of cochlear inner and outer hair cells (IHC/OHC), leading to multiple perceptual changes. This work explored possible changes in detection of amplitude modulation (AM) at three Sensation Levels (SL) for carrier frequencies of 3, 4 and 6 kHz. There were two groups of participants, aged 19 to 24 (Young) and 26 to 35 (Older) years. All had near-normal audiometric thresholds. Participants self-assessed exposure to high-level noise in recreational settings. Each group was sub-grouped into low-noise (LN) or high-noise (HN) exposure. AM detection thresholds were worse for the HN than for the LN sub-group at the lowest SL, for the males only of the Young group and for both genders for the Older group, despite no significant difference in absolute threshold at 3 and 4 kHz between sub-groups. AM detection at the lowest SL, at both 3 and 4 kHz, generally improved with increasing age and increasing absolute threshold, consistent with a recruitment-like process. However, poorer AM detection was correlated with increasing exposure at 3 kHz in the Older group. It is suggested that high-level noise exposure produces both IHC- and OHC-related damage, the balance between the two varying across frequency. However, the use of AM detection offers poor sensitivity as a measure of the effects.
机译:噪声暴露会影响耳蜗内部和外部毛细胞(IHC / OHC)的功能,从而导致多种感知变化。这项工作探索了在3、4和6 kHz载波频率的三种感觉水平(SL)下幅度调制(AM)检测中的可能变化。有两组参与者,年龄在19至24岁(青年)和26至35岁(老年)。全部具有接近正常的听力阈值。参与者在娱乐场所自我评估了暴露于高水平噪音的程度。每个组分为低噪声(LN)或高噪声(HN)暴露。 HN的AM检测阈值比最低SL的LN亚组差,仅青年组的男性和老年组的男性和女性,尽管在3 kHz和4 kHz之间绝对阈值之间无显着差异亚组。通常,随着年龄的增长和绝对阈值的提高,最低SL(3 kHz和4 kHz)下的AM检测通常会得到改善,这与类似招聘的过程一致。但是,在较老的组中,较差的AM检测与3 kHz下的暴露增加有关。建议高水平的噪声暴露会产生与IHC和OHC相关的损害,两者之间的平衡会随频率而变化。但是,使用AM检测作为效果的衡量指标灵敏度很差。

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