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首页> 外文期刊>The international journal of occupational and environmental medicine >Temporary and Permanent Level Shifts in Distortion Product Otoacoustic Emissions following Noise Exposure in an Animal Model
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Temporary and Permanent Level Shifts in Distortion Product Otoacoustic Emissions following Noise Exposure in an Animal Model

机译:在动物模型中,噪声暴露后畸变产物耳声发射的临时和永久性电平变化

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Background: Noise-induced hearing loss (NIHL) is one of the most common occupational illnesses. Most of the studies on NIHL were conducted at high noise levels that people are rarely exposed to but in industries. The function of the outer hair cells (OHCs) is impaired after exposure to industrial noise. Distortion product otoacoustic emissions (DPOAEs) are useful in examination of noise-induced level shifts. Objectives: To assess the function of OHCs by DPOAE temporary and permanent level shifts (TLS dp and PLS dp ) in rabbits exposed to white noise at realistic levels typically found in industrial settings over a broad range of frequencies. Methods: 12 albino rabbits were divided into two groups: the experimental group rabbits which were exposed to 95 dB SPL white noise at 500–8000 Hz for 8 hrs/day for 5 consecutive days, and the control group rabbits with no exposure to noise. The function of OHCs was examined by DPOAE level (L dp ) in different occasions. The study groups were compared for DPOAE temporary and permanent level shifts (TLS dp and PLS dp ) to assess the effect of noise on OHCs function. Results: Noise-induced DPOAE levels (L dp ) were decreased up to 20.65 dB (on day 8) and 18.93 dB (on day 11) at 5888.50 Hz (p=0.081). TLS dp and PLS dp were significantly decreased up to 17.99 dB and 16.27 dB, respectively in the experimental group. The most and least Ldp were significantly different (p<0.05); they occurred at 5888.50 and 588.00 Hz, respectively. There were significant differences between temporary and permanent threshold shift at various frequencies (p<0.05). These differences were mainly related to 5888.50 Hz compared to other frequencies in each ear (p<0.05). Conclusion: DPOAEs are an attractive tool for obtaining information about small temporary or permanent threshold shifts, even when the pure tone audiogram is normal.
机译:背景:噪声性听力损失(NIHL)是最常见的职业病之一。关于NIHL的大多数研究都是在高噪声水平下进行的,而该水平很少有人接触,而在工业中却很少。暴露于工业噪音中后,外部毛细胞(OHC)的功能受损。失真产物耳声发射(DPOAE)可用于检查噪声引起的电平变化。目的:通过DPOAE临时和永久水平位移(TLS dp和PLS dp)评估暴露于白噪声的兔子的真实水平(在工业环境中通常在很宽的频率范围内)来评估OHC的功能。方法:将12只白化病兔子分为两组:实验组兔子连续5天每天在500-8000 Hz下暴露95 dB SPL白噪声,持续8小时/天,而对照组则不暴露于噪声。在不同情况下,通过DPOAE水平(L dp)检查OHC的功能。比较研究组的DPOAE暂时和永久水平变化(TLS dp和PLS dp),以评估噪声对OHCs功能的影响。结果:在5888.50 Hz(p = 0.081)下,噪声引起的DPOAE水平(L dp)降低至20.65 dB(第8天)和18.93 dB(第11天)。在实验组中,TLS dp和PLS dp分别显着降低至17.99 dB和16.27 dB。 Ldp的最大值和最小值显着不同(p <0.05);它们分别出现在5888.50和588.00 Hz。在不同频率下,临时和永久阈值移位之间存在显着差异(p <0.05)。与每只耳朵的其他频率相比,这些差异主要与5888.50 Hz有关(p <0.05)。结论:DPOAE是一种吸引人的工具,即使在纯音听力图正常的情况下,也可以获取有关较小的临时或永久阈值偏移的信息。

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