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Noise exposure and the risk of cancer: a comprehensive systematic review

医学 环境噪声 癌症 噪音(视频) 乳腺癌 队列研究 环境卫生 流行病学 结直肠癌 入射(几何) 前列腺癌 噪声暴露 肿瘤科 内科学 听力学 计算机科学 地质学 人工智能 物理 声音(地理) 光学 图像(数学) 地貌学 听力损失
作者
Milad Abbasi,Saeid Yazdanirad,Hossein Dehdarirad,Debra Hughes
出处
期刊:Reviews on environmental health [De Gruyter]
卷期号:38 (4): 713-726 被引量:12
标识
DOI:10.1515/reveh-2022-0021
摘要

Abstract The association between noise exposure and increased risk of cancer has received little attention in the field of research. Therefore, the goal of this study was to conduct a systematic review on the relationship between noise exposure and the incidence of cancer in humans. In this study, four electronic bibliographic databases including Scopus, PubMed, Web of Science, and Embase were systematically searched up to 21 April 2022. All types of noise exposure were considered, including environmental noise, occupational noise, and leisure or recreational noise. Furthermore, all types of cancers were studied, regardless of the organs involved. In total, 1836 articles were excluded on the basis of containing exclusion criteria or lacking inclusion criteria, leaving 19 articles retained for this study. Five of nine case-control studies showed a significant relationship between occupational or leisure noise exposure and acoustic neuroma. Moreover, four of five case-control and cohort studies indicated statistically significant relationships between environmental noise exposure and breast cancer. Of other cancer types, two case-control studies highlighted the risk of Hodgkin and non-Hodgkin lymphoma and two cohort studies identified an increased risk of colon cancer associated with environmental noise exposure. No relationship between road traffic and railway noise and the risk of prostate cancer was observed. In total, results showed that noise exposure, particularly prolonged and continuous exposure to loud noise, can lead to the incidence of some cancers. However, confirmation of this requires further epidemiological studies and exploration of the exact biological mechanism and pathway for these effects.
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