首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Selective Inner Hair Cell Dysfunction in Chinchillas Impairs Hearing-in-Noise in the Absence of Outer Hair Cell Loss
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Selective Inner Hair Cell Dysfunction in Chinchillas Impairs Hearing-in-Noise in the Absence of Outer Hair Cell Loss

机译:龙猫的选择性内毛细胞功能障碍会在缺乏外毛细胞损失的情况下削弱听觉噪声

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摘要

Poorer hearing in the presence of background noise is a significant problem for the hearing impaired. Ototoxic drugs, ageing, and noise exposure can damage the sensory hair cells of the inner ear that are essential for normal hearing sensitivity. The relationship between outer hair cell (OHC) loss and progressively poorer hearing sensitivity in quiet or in competing background noise is supported by a number of human and animal studies. In contrast, the effect of moderate inner hair cell (IHC) loss or dysfunction shows almost no impact on behavioral measures of hearing sensitivity in quiet, when OHCs remain intact, but the relationship between selective IHC loss and hearing in noise remains relatively unknown. Here, a moderately high dose of carboplatin (75 mg/kg) that produced IHC loss in chinchillas ranging from 40 to 80 % had little effect on thresholds in quiet. However, when tested in the presence of competing broadband (BBN) or narrowband noise (NBN), thresholds increased significantly. IHC loss >60 % increased signal-to-noise ratios (SNRs) for tones (500–11,300 Hz) in competing BBN by 5–10 dB and broadened the masking function under NBN. These data suggest that IHC loss or dysfunction may play a significant role in listening in noise independent of OHC integrity and that these deficits may be present even when thresholds in quiet are within normal limits.
机译:在存在背景噪声的情况下听力差是听力受损的重要问题。耳毒性药物,衰老和噪声暴露会损害内耳的感觉毛细胞,这对于正常的听力敏感度至关重要。许多人类和动物研究都支持在安静或竞争性背景噪音中,外部毛细胞(OHC)丢失与听力敏感性逐渐变差之间的关系。相比之下,当OHC保持完好无损时,中度内毛细胞(IHC)丧失或功能障碍的影响几乎不会影响安静环境下听觉敏感性的行为指标,但选择性IHC丧失与噪声中听觉之间的关系仍然相对未知。在这里,中等剂量的卡铂(75 mg / kg)在龙猫中导致IHC的损失为40%至80%,对安静的阈值影响很小。但是,在存在竞争性宽带(BBN)或窄带噪声(NBN)的情况下进行测试时,阈值会显着增加。 IHC损耗在竞争BBN中的音调(500-11,300 Hz)上的信噪比(SNR)增加60%以上,增加5-10 dB,并扩大了NBN下的屏蔽功能。这些数据表明,IHC的丧失或功能障碍在聆听噪音时可能起重要作用,而与OHC的完整性无关,并且即使安静的阈值在正常范围内,也可能存在这些缺陷。

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