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峰度对职业性复杂噪声性听力损失影响的定量分析。

A Quantitative Analysis of Kurtosis Impact on Occupational Complex Noise-Induced Hearing Loss.

作者信息

Gong Wei, Byrne David C, Themann Christa L, Feng H Amy

机构信息

National Institute for Occupational Safety and Health, Division of Field Studies and Engineering, Cincinnati, Ohio, USA.

出版信息

Am J Ind Med. 2025 Sep 7. doi: 10.1002/ajim.70021.

Abstract

BACKGROUND

Workers in industry settings are often exposed to complex noise, which poses a greater risk to hearing loss than continuous noise at equivalent energy levels. Previous studies have identified kurtosis as an essential metric for evaluating complex noise-induced hearing loss (NIHL). This study aimed to characterize the distribution of workers exposed to complex noise, examine the associations between kurtosis and changes in hearing thresholds at various frequencies, and explore kurtosis's role in estimating NIHL and its integration into occupational hearing loss prevention programs.

METHODS

The study quantitatively analyzed data from 2400 workers exposed to industrial complex noise and 1520 non-noise-exposed workers in China. Both arithmetic and geometric average kurtosis were used to characterize the work-shift noise records. Linear regression models assessed noise-induced permanent threshold shift (NIPTS) across different frequency ranges.

RESULTS

For workers exposed to average noise levels between 80 and 92 dBA, increased kurtosis levels correlated with worsening NIPTS across frequencies from 0.5 to 8 kHz. However, the impact of kurtosis at lower noise exposure levels (70-79 dBA) remains uncertain.

CONCLUSIONS

Kurtosis is crucial for predicting hearing loss among workers exposed to complex noise at average levels of 85 and 90 dBA. The findings have potential implications for occupational safety and health, particularly for the recruitment of workers into hearing loss prevention programs. Further risk assessment analysis could use the noise kurtosis metric to examine the excess risk of NIHL associated with complex noise exposure.

摘要

背景

工业环境中的工人经常暴露于复杂噪声中,与同等能量水平的连续噪声相比,这种噪声对听力损失构成更大风险。先前的研究已将峰度确定为评估复杂噪声性听力损失(NIHL)的一项重要指标。本研究旨在描述暴露于复杂噪声的工人分布情况,研究峰度与不同频率听力阈值变化之间的关联,并探讨峰度在估计噪声性听力损失以及将其纳入职业性听力损失预防计划中的作用。

方法

该研究对中国2400名暴露于工业复杂噪声的工人和1520名未暴露于噪声的工人的数据进行了定量分析。算术平均峰度和几何平均峰度均用于描述轮班噪声记录。线性回归模型评估了不同频率范围内的噪声性永久性阈值偏移(NIPTS)。

结果

对于平均噪声水平在80至92分贝声级(dBA)之间的工人,峰度水平升高与0.5至8千赫兹(kHz)频率范围内的NIPTS恶化相关。然而,在较低噪声暴露水平(70 - 79 dBA)下峰度的影响仍不确定。

结论

峰度对于预测平均水平为85和90 dBA的复杂噪声暴露工人的听力损失至关重要。这些发现对职业安全与健康具有潜在意义,特别是对于将工人纳入听力损失预防计划而言。进一步的风险评估分析可使用噪声峰度指标来检查与复杂噪声暴露相关的噪声性听力损失的额外风险。

相似文献

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Interventions to prevent occupational noise-induced hearing loss.预防职业性噪声性听力损失的干预措施。
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Interventions to prevent occupational noise-induced hearing loss.预防职业性噪声性听力损失的干预措施。
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