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Study of noise effects on rabbit's hearing status using distortion product otoacoustic emissions

机译:使用失真产物耳声发射研究噪声对兔听力状态的影响

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Background and Aim: Noise-induced hearing loss is the most common problem in industrial areas. This study aimed to determine effects of excessive noise exposure on measurable characteristics of distortion product otoacoustic emissions (DPOAEs) in rabbits.Methods: The study was carried out on 12 adult male New Zealand White rabbits including case group - exposed to 500-8000 Hz broadband white noise with 100 dBA SPL for 8 hours per day in 5 consecutive days - and control group. After three days period of acclimatization to the experimental condition, rabbits' hearing status in each group were measured by distortion product otoacoustic emissions on days zero means before the study was initiated as a baseline, eight, one hour after the latest exposure to noise, and ten. The recorded results were analyzed using SPSS software.Results: Highest mean distortion product otoacoustic emissions amplitudes in case group were allocated to frequencies of 5888.50 Hz, 8166.50 Hz, 9855.00 Hz, 3956.00 Hz, and 3098.50 Hz, respectively. However, the lowest mean distortion product otoacoustic emissions amplitude was related to frequency of 588.00 Hz (p=0.001).Conclusion: This study revealed that distortion product otoacoustic emissions amplitude shifts due to noise occur first in high and then in middle frequencies. Additionally, exposure to noise can decrease distortion product otoacoustic emissions amplitudes. We conclude that distortion product otoacoustic emissions can be a reliable test for estimating personal susceptibility to noise-induced hearing loss.
机译:背景与目的:噪声引起的听力损失是工业领域中最常见的问题。这项研究旨在确定过度噪声暴露对兔畸变产物耳声发射(DPOAE)的可测量特征的影响。方法:该研究是在12只成年雄性新西兰白兔(包括病例组)上进行的,暴露于500-8000 Hz宽带连续5天每天连续8天每天用100 dBA SPL产生白噪声-对照组。在适应实验条件三天后,在开始基线研究前零天,最近一次暴露于噪声后八小时,一小时,通过失真产物耳声发射来测量每组兔子的听力状态。十。使用SPSS软件对记录的结果进行分析。结果:病例组中的最高平均失真产物耳声发射幅度分别分配为5888.50 Hz,8166.50 Hz,9855.00 Hz,3956.00 Hz和3098.50 Hz。然而,最低的平均失真产物耳声发射振幅与频率588.00 Hz有关(p = 0.001)。结论:这项研究表明,由于噪声引起的失真产物耳声发射振幅的变化首先出现在高频,然后出现在中频。另外,暴露于噪声下可以降低失真产物的耳声发射幅度。我们得出的结论是,失真产物的耳声发射可以作为估计个人对噪声引起的听力损失的敏感性的可靠测试。

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