声学环境对铁路附近居民区睡眠和心理健康的影响

IF 3.4 2区 物理与天体物理 Q1 ACOUSTICS
Lei Zhu , Jinglun Ma , Yue Wu , Fangfang Liu , Jian Kang
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引用次数: 0

摘要

噪声是影响身心健康的重要环境风险因素。此外,长期暴露在噪声环境中会对身心造成负担,已成为一个严重的问题。铁路运输是我国货物运输的主要方式之一,但货运列车产生的噪声和振动对附近地区的居民造成了严重影响。为了进一步研究铁路噪声和道路噪声暴露与睡眠时间和心理健康评分变化之间的关系,我们在中国哈尔滨进行了实地研究,并构建了一个健康风险预测模型。结果显示,等效连续 A 加权声压级(LAeq)每增加 1 分贝,铁路附近居民的深度睡眠比例就会下降 0.2%。虽然铁路附近居民的睡眠评价与较远居民相似,但他们的精神健康状况较差。Cox 风险模型显示,铁路附近居民出现心理健康问题的风险比其他居民高出约三倍。这些发现可能有助于制定策略,降低铁路附近居民患精神疾病的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of acoustic environment on sleep and mental health in residential regions near railways

Effects of acoustic environment on sleep and mental health in residential regions near railways

Noise is an important environmental risk factor for physical and mental health. Furthermore, long-term noise exposure is burdensome for the mind and body and has become a serious problem. Rail transportation is one of the main methods used to transport goods in China; however, the noise and vibrations generated by freight trains have serious impacts on residents in nearby regions. To further investigate the relationship between railway noise and road noise exposure and changes in sleep duration and mental health scores, a field study in Harbin, China, was conducted and a health risk prediction model was constructed. The results showed that for every 1 dB increase in the Equivalent continuous A-weighted sound pressure level (LAeq), the percentage of deep sleep among residents living near the railway decreased by 0.2 %. Although residents near the railway reported similar sleep evaluations compared to those living farther away, they exhibited poorer mental health. Cox risk modeling indicates that the risk of mental health problems is approximately three times higher for those living near the railway. These findings potentially provide benefits in developing strategies to reduce the risk of mental illness for people residing near railways.

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来源期刊
Applied Acoustics
Applied Acoustics 物理-声学
CiteScore
7.40
自引率
11.80%
发文量
618
审稿时长
7.5 months
期刊介绍: Since its launch in 1968, Applied Acoustics has been publishing high quality research papers providing state-of-the-art coverage of research findings for engineers and scientists involved in applications of acoustics in the widest sense. Applied Acoustics looks not only at recent developments in the understanding of acoustics but also at ways of exploiting that understanding. The Journal aims to encourage the exchange of practical experience through publication and in so doing creates a fund of technological information that can be used for solving related problems. The presentation of information in graphical or tabular form is especially encouraged. If a report of a mathematical development is a necessary part of a paper it is important to ensure that it is there only as an integral part of a practical solution to a problem and is supported by data. Applied Acoustics encourages the exchange of practical experience in the following ways: • Complete Papers • Short Technical Notes • Review Articles; and thereby provides a wealth of technological information that can be used to solve related problems. Manuscripts that address all fields of applications of acoustics ranging from medicine and NDT to the environment and buildings are welcome.
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