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Temporal and speech processing skills in normal hearing individuals exposed to occupational noise

机译:处于职业噪声中的正常听力个体的时间和语音处理技能

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Prolonged exposure to high levels of occupational noise can cause damage to hair cells in the cochlea and result in permanent noise-induced cochlear hearing loss. Consequences of cochlear hearing loss on speech perception and psychophysical abilities have been well documented. Primary goal of this research was to explore temporal processing and speech perception Skills in individuals who are exposed to occupational noise of more than 80 dBA and not yet incurred clinically significant threshold shifts. Contribution of temporal processing skills to speech perception in adverse listening situation was also evaluated. A total of 118 participants took part in this research. Participants comprised three groups of train drivers in the age range of 30-40 (n= 13), 41 50 ( = 13), 41-50 (n = 9), and 51-60 (n = 6) years and their non-noise-exposed counterparts (n = 30 in each age group). Participants of all the groups including the train drivers had hearing sensitivity within 25 dB HL in the octave frequencies between 250 and 8 kHz. Temporal processing was evaluated using gap detection, modulation detection, and duration pattern tests. Speech recognition was tested in presence multi-talker babble at -5dB SNR. Differences between experimental and control groups were analyzed using ANOVA and independent sample t-tests. Results showed a trend of reduced temporal processing skills in individuals with noise exposure. These deficits were observed despite normal peripheral hearing sensitivity. Speech recognition scores in the presence of noise were also significantly poor in noise-exposed group. Furthermore, poor temporal processing skills partially accounted for the speech recognition difficulties exhibited by the noise-exposed individuals. These results suggest that noise can cause significant distortions in the processing of suprathreshold temporal cues which may add to difficulties in hearing in adverse listening conditions.
机译:长时间暴露在高水平的职业噪声中可能会损坏耳蜗中的毛细胞,并导致永久性噪声诱发的耳蜗听力丧失。耳蜗听力损失对言语感知和心理生理能力的影响已得到充分证明。这项研究的主要目标是探索暴露于80 dBA以上的职业噪声且尚未引起临床上显着的阈值变化的个体的时间处理和语音感知技能。还评估了时间处理技能对不良聆听情况下语音感知的贡献。共有118名参与者参加了这项研究。参与者包括三组火车驾驶员,年龄分别为30-40岁(n = 13),41 50(= 13),41-50(n = 9)和51-60(n = 6)岁,非噪声暴露的对应对象(每个年龄段的n = 30)。在250至8 kHz的倍频范围内,包括火车驾驶员在内的所有组的参与者的听力灵敏度均在25 dB HL之内。使用间隙检测,调制检测和持续时间模式测试来评估时间处理。语音识别在-5分贝SNR的存在多方讲话者混音中进行了测试。使用方差分析和独立样本t检验分析实验组和对照组之间的差异。结果表明,有噪声暴露的人的时间处理能力下降的趋势。尽管正常的外周听觉敏感性仍观察到这些缺陷。在有噪声的人群中,有噪声的情况下的语音识别分数也很差。此外,不良的时间处理能力部分地解释了受噪声影响的个人所表现出的语音识别困难。这些结果表明,噪声可能会在超阈值时间提示的处理过程中引起严重的失真,这可能会增加不利听音条件下的听觉困难。

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