The Effect of Noise Exposure on High-Frequency Hearing Loss among Chinese Workers: A Meta-Analysis
Abstract
:1. Introduction
2. Materials and Methods
2.1. Literature Search
2.2. Inclusion and Exclusion Criteria
2.3. Data Extraction and Quality Assessment
2.4. Statistical Analysis
3. Results
3.1. Literature Search
3.2. Characteristics of Included Studies
3.3. Meta-Analysis of the Effect of Noise Exposure on High-Frequency Hearing Loss
3.4. Subgroup Analysis
3.5. Dose–Response Analysis
3.6. Sensitivity Analysis and Publication Bias
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Goines, L.; Hagler, L. Noise pollution: A modem plague. South. Med. J. 2007, 100, 287–294. [Google Scholar] [CrossRef] [PubMed]
- Fuente, A.; Hickson, L. Noise-induced hearing loss in Asia. Int. J. Audiol. 2011, 50 (Suppl. S1), S3–S10. [Google Scholar] [CrossRef] [PubMed]
- WHO. World Report on Hearing; World Health Organization: Geneva, Switzerland, 2021. [Google Scholar]
- Cunningham, L.L.; Tucci, D.L. Hearing loss in adults. N. Engl. J. Med. 2017, 377, 2465–2473. [Google Scholar] [CrossRef] [PubMed]
- Rikhotso, O.; Morodi, T.J.; Masekameni, D.M. Occupational health and safety statistics as an indicator of worker physical health in South African industry. Int. J. Environ. Res. Public Health 2022, 19, 1690. [Google Scholar] [CrossRef] [PubMed]
- Dobie, R.A. The burdens of age-related and occupational noise-induced hearing loss in the United States. Ear Hear 2008, 29, 565–577. [Google Scholar] [CrossRef]
- Edward, M.; Manohar, S.; Somayaji, G.; Kallikkadan, H.H. Prevalence, awareness, and preventive practices of noise-induced hearing loss in a plywood industry. Indian J. Otol. 2016, 22, 14–18. [Google Scholar] [CrossRef]
- Singh, L.P.; Bhardwaj, A.; Deepak, K.K. Occupational noise-induced hearing loss in Indian steel industry workers: An exploratory study. Hum. Factors 2013, 55, 411–424. [Google Scholar] [CrossRef]
- Buqammaz, M.; Gasana, J.; Alahmad, B.; Shebl, M.; Albloushi, D. Occupational noise-induced hearing loss among migrant workers in Kuwait. Int. J. Environ. Res. Public Health 2021, 18, 5295. [Google Scholar] [CrossRef]
- Nelson, D.I.; Nelson, R.Y.; Concha-Barrientos, M.; Fingerhut, M. The global burden of occupational noise-induced hearing loss. Am. J. Ind. Med. 2005, 48, 446–458. [Google Scholar] [CrossRef] [Green Version]
- WHO. Hearing Loss Due to Recreational Exposure to Loud Sounds: A Review; World Health Organization: Geneva, Switzerland, 2015. [Google Scholar]
- Kuang, R.; Yu, Y.; Yang, Y.; Gao, Y.; Tu, C.; Wang, L. High frequency hearing loss detection rate in occupational noise exposed workers in China: Meta-analysis. Chin. J. Ind. Hyg. Occup. Dis. 2021, 39, 184–189. (In Chinese) [Google Scholar]
- Pölkki, T.; Korhonen, A. The effectiveness of music on pain among preterm infants in the neonatal intensive care unit: A systematic review. JBI Libr. Syst. Rev. 2012, 10, 4600–4609. [Google Scholar] [CrossRef] [Green Version]
- He, J.; Zhao, W.; Wang, S. Investigation of hearing loss among noise industry workers in a large chemical plant. Occup. Health Emerg. Rescue 2017, 35, 44–45. (In Chinese) [Google Scholar]
- Xie, R.; Yan, Q.; Wu, X. Relationship between occupational noise exposure and hearing loss In direct enterprises in Huizhou city. Occup. Health 2011, 27, 1834–1835. (In Chinese) [Google Scholar]
- Ni, L.; Yao, Y.; Li, J.; Wu, J.; Yan, Y.; Zhang, T.; Wu, Q. Analysis of hearing loss among noise-exposed workers in a boiler factory. Chin. J. Ind. Med. 2011, 24, 16–19. (In Chinese) [Google Scholar]
- Shen, L. Analysis of hearing loss among noise-exposed workers in the main industries in Heyuan city. China Rural. Urban Enterp. Health 2019, 34, 224–226. (In Chinese) [Google Scholar]
- Du, J. Analysis of occupational health hazards from noise in a woodworking company in Shenzhen city. Chin. Health Stand. Manag. 2022, 13, 4–8. (In Chinese) [Google Scholar]
- Yuemei, M. Investigation and Analysis of Occupational Environment Hygiene and Occupational Health Status among Noise-Exposed Workers. Master’s Thesis, Soochow University, Suzhou, China, 2015. (In Chinese). [Google Scholar]
- Pan, L.; Wu, X.; Feng, X. Survey of the effect of ship noise on crew members’ hearing. China Occup. Educ. 2009, 46, 351–353. (In Chinese) [Google Scholar]
- Lv, A. Investigation on the Occupational Health Hazards of Noise in a Woodworking Company in Tianjin City. Master’s Thesis, Tianjin Medical University, Tianjin, China, 2015. (In Chinese). [Google Scholar]
- Yuan, J.; Ji, F.; Hao, J.; Yang, C. Investigation on the effect of production noise on male workers in a hot forging workshop. Ind. Health Occup. Dis. 2005, 6, 413–414. (In Chinese) [Google Scholar]
- Hu, J.; He, J.; Lin, B. Investigation and analysis of hearing loss among noise-exposed workers in a steel pipe factory. Chin. J. Ind. Med. 2005, 6, 614–615. (In Chinese) [Google Scholar]
- Dai, Y.; Fu, J.; He, J. Relationship between occupational noise-induced deafness and cumulative noise exposure among hydropower workers. Ind. Health Occup. Dis. 2011, 37, 214–217. (In Chinese) [Google Scholar]
- Yu, R.; Zhao, H.; Li, X.; Fan, J. Investigation on noise pollution in military canteens and its effect on the hearing of cooking staff. North China Natl. Def. Med. 2010, 22, 578–580. (In Chinese) [Google Scholar]
- Zu, A.; Cui, C.; Wang, X.; Li, H. Investigation of the effect of industrial pulse noise on the hearing of stamping workers. Int. Med. Health Guid. Rep. 2012, 3, 429–433. (In Chinese) [Google Scholar]
- Xie, S.; Guo, Q.; Li, Y.; Qian, H. Health status of noise-exposed workers in a paper-making company in Zhenjiang city. Occup. Health 2013, 29, 310–314. (In Chinese) [Google Scholar]
- Lin, L.; Chen, H.; Liu, L.; Liu, Q.; Luo, Y. Impact of occupational noise on workers’ hearing. Mod. Prev. Med. 2005, 9, 1234–1235. (In Chinese) [Google Scholar]
- Gan, W.; Zhou, Y.; Liang, H. Analysis of hearing tests in 3182 workers from a chemical company during occupational health examinations. Chin. Public Health Manag. 2013, 29, 436–437. (In Chinese) [Google Scholar]
- Yu, J. Epidemiological Investigation of Occupational Noise Exposure in 55 Municipal-Level Occupational Hazards Supervision Enterprises in a Certain City. Master’s Thesis, Soochow University, Suzhou, China, 2014. (In Chinese). [Google Scholar]
- Li, J.; He, J.; Huang, Y. Analysis of hearing levels of workers exposed to mechanical noise. Chin. J. Ind. Med. 2018, 31, 287–289. (In Chinese) [Google Scholar]
- Wang, C.; Wang, F.; Wu, B.; Qin, G. Epidemiological investigation of hearing loss in home-based gemstone workers. Chin. J. Ind. Med. 2013, 26, 201–203. (In Chinese) [Google Scholar]
- Liu, J. The Effects of Noise on the Health of Occupational Populations. Master’s Thesis, Nanjing Medical University, Nanjing, China, 2015. (In Chinese). [Google Scholar]
- Zhou, X.; Liu, J. Occupational and physiological health status of female workers exposed to noise in a large steel plant in Xinjiang and its influencing factors. Occup. Health 2017, 33, 15–22. (In Chinese) [Google Scholar]
- Chen, X.; Qiu, Y.; Li, Q.; Qin, L.; Zhang, L.; Liang, G.; Zou, Y. The effects of occupational noise exposure on hearing of workers in a thermal power plant in Guangxi. Occup. Health 2014, 30, 758–760. (In Chinese) [Google Scholar]
- Li, B.; Li, F.; Zhang, Y.; Ma, Y.; Liu, J. Investigation on noise-induced hearing impairment among workers in the boiler manufacturing industry. Chin. J. Ind. Hyg. Occup. Dis. 2003, 5, 57–58. (In Chinese) [Google Scholar]
- Li, L.; Huang, J.; Huang, H.; Wang, Z.; Ding, H. Correlation between cumulative noise exposure and hearing loss. Lit. Inf. Prev. Med. 2000, 2, 105–106. (In Chinese) [Google Scholar]
- Yang, C.; Qiu, Y. Survey and analysis of the effects of pulse noise on occupational fatigue and hearing in workers. Chin. J. Occup. Med. 1999, 4, 51–52. (In Chinese) [Google Scholar]
- Chen, Y.; Yang, J. The effects of noise on the health of female workers. Occup. Health 2003, 2, 3–5. (In Chinese) [Google Scholar]
- Fu, G.; Zou, Z.; Li, B.; Wang, J.; Yang, C.; Zheng, C. Study on the effects of steady-state noise on hearing in a certain chemical plant. Chin. J. Health Eng. 2007, 1, 20–22. (In Chinese) [Google Scholar]
- Liu, L.; Wen, L. The effects of production noise in a certain mechanical processing enterprise on workers’ health. Occup. Health 2013, 29, 2133–2135. (In Chinese) [Google Scholar]
- Li, M.; Li, J.; Cao, D.; Chen, C.; Li, W.; Tang, G. Analysis of high-frequency hearing loss among workers exposed to noise in a certain artificial gemstone factory. Occup. Health Emerg. Rescue 2006, 3, 115–116. (In Chinese) [Google Scholar]
- Liu, S.; Yao, Y.; Wu, Q.; Yan, Y. Investigation of hearing loss among workers exposed to noise in a certain tobacco company. Chin. J. Ind. Med. 2010, 23, 215–217. (In Chinese) [Google Scholar]
- Chang, S.-J.; Chang, C.-K. Prevalence and risk factors of noise-induced hearing loss among liquefied petroleum gas (LPG) cylinder infusion workers in Taiwan. Ind. Health 2009, 47, 603–610. [Google Scholar] [CrossRef] [Green Version]
- Zhang, Q.; Chen, Z.; Zhong, M.; Wu, M.; Zhang, Y. Analysis of characteristics of hearing loss in electronic technology enterprise noise workers. Int. J. Med. Health 2012, 3, 424–429. (In Chinese) [Google Scholar]
- Wu, J.; Xu, X.; Jiang, B. The impact of noise exposure on female workers’ health in a shoe factory. Strait J. Prev. Med. 2009, 15, 63–65. (In Chinese) [Google Scholar]
- Tang, J.; Tu, X.; Wu, J. Investigation of hearing loss among 726 workers in Suining city. Occup. Health Inj. 2018, 33, 7–9. (In Chinese) [Google Scholar]
- Tang, M.; Hua, M. Analysis of occupational health examination results of noise-exposed workers in the new district of Wuxi. Zhejiang J. Prev. Med. 2015, 27, 401–402. (In Chinese) [Google Scholar]
- Li, C. The Effects of Noise Exposure on Workers’ Hearing and Cardiovascular Systems. Master’s Thesis, Shandong University, Jinan, China, 2017. (In Chinese). [Google Scholar]
- Liu, J.; Xu, M.; Ding, L.; Zhang, H.; Pan, L.; Liu, Q.; Ding, E.; Zhao, Q.; Wang, B.; Han, L.; et al. Prevalence of hypertension and noise-induced hearing loss in Chinese coal miners. J. Thorac. Dis. 2016, 8, 422–429. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Gong, W.; Zhao, L.; Li, L.; Morata, T.C.; Qiu, W.; Feng, H.A.; Zhu, B. Evaluating the effectiveness of earplugs in preventing noise-induced hearing loss in an auto parts factory in China. Int. J. Environ. Res. Public Health 2021, 18, 7190. [Google Scholar] [CrossRef]
- Jing, Q.; Zang, J.; Wang, C. Analysis of hearing loss in drilling workers of an oilfield. Chongqing Med. 2012, 41, 3. (In Chinese) [Google Scholar]
- Basu, S.; Aggarwal, A.; Dushyant, K.; Garg, S. Occupational noise induced hearing loss in India: A systematic review and meta-analysis. Indian J. Community Med. 2022, 47, 166–171. [Google Scholar] [CrossRef]
- Mrena, R.; Ylikoski, M.; Mäkitie, A.; Pirvola, U.; Ylikoski, J. Occupational noise-induced hearing loss reports and tinnitus in Finland. Acta. Otolaryngol. 2007, 127, 729–735. [Google Scholar] [CrossRef]
- Ising, H.; Kruppa, B. Health effects caused by noise: Evidence from the literature from the past 25 years. Noise Health 2004, 6, 5–13. [Google Scholar]
- Liang, C.; Li, Y.; Duang, D.; Bai, L.; Liu, Y. Effect of cumulative noise exposure on pure tone air conduction hearing threshold at different frequencies. Chin. J. Ind. Med. 2021, 34, 420–423. (In Chinese) [Google Scholar]
- Hétu, R. Critical analysis of the effectiveness of secondary prevention of occupational hearing loss. J. Occup. Med. 1979, 21, 251–254. [Google Scholar]
- Cui, Z.; Wu, J.; Tang, J.; Chen, Q.; Fu, Z. Research progress in species differences and underlying physiological mechanism of noise-induced hearing loss. Prog. Biochem. Biophys. 2021, 48, 407–422. (In Chinese) [Google Scholar]
- Zhou, J.; Shi, Z.; Zhou, L.; Hu, Y.; Zhang, M. Occupational noise-induced hearing loss in China: A systematic review and meta-analysis. BMJ Open 2020, 10, e039576. [Google Scholar] [CrossRef]
First Author and Year | Sample Size | Type of Industry | Male/% | Age/Years | Length of Work/Years | LAeq/dB(A) | CNE/dB(A)·Year | HFNIHL/% | SFNIHL/% | Quality Assessment |
---|---|---|---|---|---|---|---|---|---|---|
He, 2017 [14] | 531 | Chemical plant | 95.7 | 33.52 ± 8.39 | 9.20 ± 6.68 | 67.57–90.65 | - | 21.1 | - | 8 |
Xie, 2011 [15] | 495 | Hardware, printing, etc. | - | 28.9 | 6.3 | 90.0 | - | 52.6 | - | 7 |
Ni, 2011 [16] | 214 | Boiler factory | 90.2 | 42.9 ± 8.5 | 17.6 ± 11.9 | 77.0–123.8 | 85–105 | 58.1 | 8.6 | 8 |
Shen, 2019 [17] | 1100 | Toy factory, mining, etc. | 70.0 | 39.1 ± 4.1 | 0.5–10 | 82.5 | - | 14.1 | 1.8 | 7 |
Du, 2022 [18] | 158 | Woodworking | 63.9 | 37.24 ± 5.33 | 4.25 ± 0.79 | 85–99 | - | 29.2 | - | 7 |
Mo, 2015 [19] | 1288 | Industrial Park | 60.7 | 32.32 ± 4.27 | 13.73 ± 10.18 | 89.7 | - | 9.0 | - | 7 |
Pan, 2009 [20] | 2000 | Ship | 100 | 20–60 | - | 110.0 | 85–100 | 69.1 | 10.9 | 7 |
Lv, 2015 [21] | 246 | Wood processing | 40.9 | 36.0 | 4.3 | 68.2–104 | - | 25.9 | - | 7 |
Yuan, 2005 [22] | 174 | Hot forging workshop | 100 | 36.9 ± 9.0 | 19.7 ± 8.2 | 87–109 | - | 36.2 | 13.8 | 8 |
Hu, 2005 [23] | 191 | Steel pipe mills | - | 33.6 ± 4.2 | 12.7 ± 3.0 | 87–109 | 95–110 | 68.3 | 35.5 | 7 |
Dai, 2011 [24] | 159 | Hydropower Station | 76.1 | 35.4 ± 7.0 | 14.2 ± 6.6 | 60–106 | 103.5 ± 3.1 | 17.6 | 5.7 | 6 |
Yu, 2010 [25] | 110 | PLA Kitchen | - | - | - | 80.0 | - | 10.0 | 7.3 | 5 |
Zu, 2012 [26] | 778 | Mechanical processing | 58.0 | 28.2 ± 6.1 | 2.9 ± 3.3 | 65.9–96.6 | 92.1 ± 4.4 | 31.9 | - | 8 |
Xie, 2013 [27] | 2127 | Papermaking Enterprise | 99.2 | 31.21 ± 4.82 | 9.51 ± 4.74 | 86.1 | - | 22.6 | 12.3 | 6 |
Lin, 2005 [28] | 1000 | Machinery, etc. | 56.8 | 19–51 | <5–>15 | 80.5–104.5 | - | 12.0 | 1.3 | 5 |
Gan, 2013 [29] | 3182 | Chemical companies | 87.0 | 33.5 ± 8.4 | - | - | - | 6.5 | 4.2 | 5 |
Yu, 2014 [30] | 14,843 | - | 88.6 | 28.4 ± 7.0 | 4.0 ± 3.5 | 60.7–109.0 | - | 52.0 | 7.6 | 6 |
Li, 2018 [31] | 5661 | Machinery, automobile | 96.0 | 33.9 ± 9.4 | 0–25 | 89.6 ± 7.5 | - | 15.7 | - | 8 |
Wang, 2013 [32] | 441 | Gem process | 42.6 | 40.2 ± 9.5 | 11.1 ± 6.3 | 62.9–102.3 | - | 14.17 | 3.4 | 8 |
Liu, 2016 [33] | 1659 | Power Generation Enterprise | 63.4 | 42.36 ± 7.95 | 18.5 ± 11.18 | 78.1 | - | 11.5 | 7.0 | 7 |
Zhou, 2017 [34] | 594 | Steel Enterprise | 0 | 38.9 ± 8.2 | 14.8 ± 8.9 | - | 85–105 | 28.0 | - | 7 |
Chen, 2014 [35] | 1273 | Power Plant | 74.0 | 44.5 ± 6.8 | 21.5 ± 8.3 | 86.9 ± 12.9 | - | 14.0 | - | 7 |
Li, 2004 [36] | 129 | Boiler-Manufacturing | 94.6 | 32.04 ± 9.61 | 4.52 ± 2.97 | 82–108 | - | 51.2 | - | 7 |
Li, 2000 [37] | 300 | Power Branch Plant, etc. | - | 34.13 ± 9.97 | 10.5 ± 6.2 | 103.4 | 80–105 | 24.7 | - | 6 |
Yang, 1999 [38] | 154 | Metal processing plant | 87.0 | 32.6 ± 7.7 | 8.6 ± 7.3 | 125.0 | - | 30.5 | - | 5 |
Chen, 2003 [39] | 482 | - | 0 | 23.13 ± 5.77 | 7.0 | 93–103 | - | 16.8 | 24.9 | 5 |
Fu, 2007 [40] | 207 | Chemical Plant | 67.1 | 19–50 | 0.2–18 | 85–89 | - | 36.2 | 12.1 | 8 |
Liu, 2013 [41] | 594 | Machinery processing | 87.9 | 36.2 | 11.7 | 71.5–106.4 | 85–100 | 22.0 | - | 7 |
Li, 2006 [42] | 1050 | Artificial Gem Plant | 96.5 | 24.0 ± 3.9 | 2.7 ± 2.1 | 89.2 ± 2.8 | - | 31.0 | - | 8 |
Liu, 2010 [43] | 710 | Tobacco company | 54.6 | 36.8 ± 7.9 | 17.3 ± 9.4 | 42.4–90.9 | - | 20.9 | 2.3 | 7 |
Chang, 2009 [44] | 75 | Liquefied Petroleum Gas Cylinder | 100.0 | 42.4 ± 7.9 | 10.0 ± 7.4 | 49–98 | - | 29.3 | - | 8 |
Zhang, 2012 [45] | 645 | Electronic Technology | 75.0 | 26.3 ± 3.6 | 5.0 ± 3.4 | 86.6 ± 2.6 | - | 11.8 | - | 8 |
Wu, 2009 [46] | 600 | Shoe factory | 0 | 20–51 | 1–16 | 71–96 | - | 9.8 | 1.7 | 5 |
Tang, 2018 [47] | 1346 | Automobile, etc. | - | 34.7 ± 8.7 | 20.0 ± 9.4 | 88.3 ± 16.1 | - | 8.0 | 0.1 | 7 |
Tang, 2015 [48] | 2200 | - | 100 | 22–55 | 0–25 | 85.59 ± 1.92 | - | 33.3 | - | 7 |
Li, 2017 [49] | 445 | - | 77.8 | 19–66 | 6.4 ± 5.3 | 78.5–93.9 | - | 11.9 | - | 6 |
Liu, 2016 [50] | 738 | Coal miners | 66.9 | 43.14 ± 6.66 | >10 | 60–110 | - | 28.9 | 10.0 | 8 |
Gong, 2021 [51] | 1653 | Auto parts factory | 70.0 | 37.0 | 8.0 | 87.0 | 94–100 | 40.0 | - | 8 |
Jing, 2012 [52] | 974 | Oilfield drilling | 100 | 41.57 ± 9.12 | 15.88 ± 10.96 | 60.8–105.7 | 107.93 ± 6.45 | 18.4 | 2.0 | 8 |
Group | Sample Size | Age/Years | Length of Work/Years | LAeq/dB(A) | HFNIHL/% | SFNIHL/% | Pooled OR | 95% CI |
---|---|---|---|---|---|---|---|---|
Noise | 38,075 | 35.4 ± 6.4 | 10.8 ± 6.4 | 103.6 ± 5.8 | 36.6 | 12.1 | 5.16 | 4.10–6.49 |
Control | 12,451 | 36.2 ± 8.7 | 12.4 ± 9.8 | 65.2 ± 6.4 | 12.5 | 6.2 | - | - |
Subgroup | Number of Studies | Pooled OR | 95% CI | p | I2/% |
---|---|---|---|---|---|
Publication Year | |||||
<2010 | 13 | 7.4 | 5.43–10.09 | 0.002 | 61.8 |
≥2010 | 26 | 4.29 | 3.26–5.64 | <0.001 | 90.6 |
Gender | |||||
Male | 5 | 12.22 | 5.22–28.61 | <0.001 | 95 |
Female | 3 | 7.89 | 3.56–17.48 | 0.042 | 68.4 |
Both | 26 | 3.82 | 3.18–4.60 | <0.001 | 73.8 |
NA | 5 | 5.75 | 3.31–9.98 | 0.011 | 69.4 |
Age (Mean)/years | |||||
<40 | 25 | 4.65 | 3.90–5.55 | <0.001 | 68.9 |
≥40 | 13 | 5.88 | 3.21–10.76 | <0.001 | 95.2 |
NA | 1 | 4.59 | 0.94–22.34 | - | - |
Length of Work (Mean)/years | |||||
<10 | 17 | 4.88 | 3.63–6.56 | <0.001 | 83.5 |
≥10 | 19 | 5.42 | 3.63–8.08 | <0.001 | 90.2 |
NA | 3 | 4.71 | 2.26–9.82 | <0.001 | 92.1 |
Type of Industry | |||||
Manufacturing | 31 | 4.62 | 3.87–5.51 | <0.001 | 64.7 |
Mining | 2 | 2.29 | 0.70–7.58 | <0.001 | 95.8 |
Transportation | 1 | 7.16 | 5.87–8.72 | - | - |
Other | 1 | 4.59 | 0.94–22.34 | - | - |
NA | 4 | 9.9 | 2.19–44.86 | <0.001 | 89.2 |
Factor | Number of Studies | Group | Pooled OR | 95% CI |
---|---|---|---|---|
Gender | 4 | Female | - | - |
Male | 2.83 | 1.46–5.49 | ||
Age/years | 3 | <30 | - | - |
≥30 | 2.33 | 1.62–3.36 | ||
Length of Work/years | 15 | <5 | - | - |
5–10 | 1.51 | 1.26–1.81 | ||
10–15 | 3.15 | 2.61–3.81 | ||
15–20 | 4.70 | 3.77–5.86 | ||
20–25 | 5.93 | 4.69–7.48 | ||
25–30 | 6.48 | 4.84–8.66 | ||
≥30 | 7.18 | 4.55–11.34 | ||
CNE/dB(A)·year | 8 | <85 | - | - |
85–90 | 1.08 | 0.87–1.35 | ||
90–95 | 1.34 | 0.98–1.83 | ||
95–100 | 2.02 | 1.49–2.73 | ||
100–105 | 3.07 | 2.25–4.19 | ||
105–110 | 4.31 | 2.64–7.06 | ||
≥110 | 5.97 | 2.59–13.77 |
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Yang, P.; Xie, H.; Li, Y.; Jin, K. The Effect of Noise Exposure on High-Frequency Hearing Loss among Chinese Workers: A Meta-Analysis. Healthcare 2023, 11, 1079. https://doi.org/10.3390/healthcare11081079
Yang P, Xie H, Li Y, Jin K. The Effect of Noise Exposure on High-Frequency Hearing Loss among Chinese Workers: A Meta-Analysis. Healthcare. 2023; 11(8):1079. https://doi.org/10.3390/healthcare11081079
Chicago/Turabian StyleYang, Ping, Hui Xie, Yajing Li, and Ke Jin. 2023. "The Effect of Noise Exposure on High-Frequency Hearing Loss among Chinese Workers: A Meta-Analysis" Healthcare 11, no. 8: 1079. https://doi.org/10.3390/healthcare11081079
APA StyleYang, P., Xie, H., Li, Y., & Jin, K. (2023). The Effect of Noise Exposure on High-Frequency Hearing Loss among Chinese Workers: A Meta-Analysis. Healthcare, 11(8), 1079. https://doi.org/10.3390/healthcare11081079