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[Investigation of occupational noise exposure and hearing loss in large automobile manufacturing enterprise during 2006-2010 in Guangzhou, China].

Yuan Zhao, Hao Zhou, Yànhuá Lǐ, Lv-Wu Xiao, Lin Wu, Weijia Du, Yimin Liu

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Abstract

OBJECTIVE: To analyze the relationship between occupational noise exposure and hearing loss among workers in large automobile manufacturing enterprise during 2006-2010 in Guangzhou, China. METHODS: A retrospective cohort study was conducted. The subjects were divided into noise exposure group and control group. Their hearing examination results and noise exposure levels in different workplaces were collected during 2006-2010, and the relationship between noise exposure in workplaces and hearing loss was analyzed. RESULTS: The incidence of hearing loss for the noise exposure group was 9.34%, versus 2.75% for the control group; the noise exposure group had a significantly higher risk of hearing loss than the control group (R = 3.378, 95%CI = 1.467∼ 9.083). The noise intensity and over-limit rate were significantly higher in the stamping, welding, and general assembly workshops than in other workshops. The risk of hearing loss significantly increased with years of noise exposure in 80, 85, and 90 dB (A) groups (χ(2) = 6.377, P = 0.041; χ(2) = 8.570, P = 0.014; χ(2) = 7.037, P = 0.030). The risk of hearing loss also increased with noise intensity in all working age groups (χ(2) = 5.068, P = 0.024; χ(2) = 71.497, P < 0.01; χ(2) = 24.226, P < 0.01). CONCLUSION: Noise exposure increases the risk of noise-induced hearing loss in workers. The incidence of hearing loss increases with the noise intensity in workplaces and years of noise exposure. The noise exposure level and incidence of hearing loss are higher in the stamping workshop than in other workshops. Controlling the noise intensity in automobile manufacturing enterprise may reduce the risk of hearing loss in workers.

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What this paper is about

OBJECTIVE: To analyze the relationship between occupational noise exposure and hearing loss among workers in large automobile manufacturing enterprise during 2006-2010 in Guangzhou, China. METHODS: A retrospective cohort study was conducted. The subjects were divided into noise exposure group and control group. Their hearing examination results and noise exposure levels in different workplaces were collected during 2006-2010, and the relationship between noise exposure in workplaces and hearing loss was analyzed. RESULTS: The incidence of hearing loss for the noise exposure group was 9.34%, versus 2.75% for the control group; the noise exposure group had a significantly higher risk of hearing loss than the control group (R = 3.378, 95%CI = 1.467∼ 9.083). The noise intensity and over-limit rate were significantly higher in the stamping, welding, and general assembly workshops than in other workshops. The risk of hearing loss significantly increased with years of noise exposure in 80, 85, and 90 dB (A) groups (χ(2) = 6.377, P = 0.041; χ(2) = 8.570, P = 0.014; χ(2) = 7.037, P = 0.030). The risk of hearing loss also increased with noise intensity in all working age groups (χ(2) = 5.068, P = 0.024; χ(2) = 71.497, P < 0.01; χ(2) = 24.226, P < 0.01). CONCLUSION: Noise exposure increases the risk of noise-induced hearing loss in workers. The incidence of hearing loss increases with the noise intensity in workplaces and years of noise exposure. The noise exposure level and incidence of hearing loss are higher in the stamping workshop than in other workshops. Controlling the noise intensity in automobile manufacturing enterprise may reduce the risk of hearing loss in workers.

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Available abstract

OBJECTIVE: To analyze the relationship between occupational noise exposure and hearing loss among workers in large automobile manufacturing enterprise during 2006-2010 in Guangzhou, China. METHODS: A retrospective cohort study was conducted. The subjects were divided into noise exposure group and control group. Their hearing examination results and noise exposure levels in different workplaces were collected during 2006-2010, and the relationship between noise exposure in workplaces and hearing loss was analyzed. RESULTS: The incidence of hearing loss for the noise exposure group was 9.34%, versus 2.75% for the control group; the noise exposure group had a significantly higher risk of hearing loss than the control group (R = 3.378, 95%CI = 1.467∼ 9.083). The noise intensity and over-limit rate were significantly higher in the stamping, welding, and general assembly workshops than in other workshops. The risk of hearing loss significantly increased with years of noise exposure in 80, 85, and 90 dB (A) groups (χ(2) = 6.377, P = 0.041; χ(2) = 8.570, P = 0.014; χ(2) = 7.037, P = 0.030). The risk of hearing loss also increased with noise intensity in all working age groups (χ(2) = 5.068, P = 0.024; χ(2) = 71.497, P < 0.01; χ(2) = 24.226, P < 0.01). CONCLUSION: Noise exposure increases the risk of noise-induced hearing loss in workers. The incidence of hearing loss increases with the noise intensity in workplaces and years of noise exposure. The noise exposure level and incidence of hearing loss are higher in the stamping workshop than in other workshops. Controlling the noise intensity in automobile manufacturing enterprise may reduce the risk of hearing loss in workers.

Key concepts: Hearing loss, Noise-induced hearing loss, Noise exposure, Audiology, Noise (video), Industrial noise, Medicine, Incidence (geometry)

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