Pedersen Eja
Environmental Psychology, Department of Architecture and Built Environment, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden.
Int J Environ Res Public Health. 2015 Mar 18;12(3):3246-63. doi: 10.3390/ijerph120303246.
Urban densification increases exposure to noise, light, odour, and vibration in urban dwellings. Exposure from combined environmental stressors intruding into the home could increase the risk of adverse effects on wellbeing, even when the exposure is at a relatively low level. This study assesses the prevalence of annoyance with a combination of potential environmental stressors common in urban areas and the association with wellbeing. A questionnaire was sent by mail to residents in five areas in Halmstad (Sweden) with similar socioeconomic and housing characteristics but different exposure (response rate 56%; n=385). Of the respondents, 50% were annoyed to some degree by at least one of the suggested stressors, most commonly by noise and vibration from local traffic. Structural equation modelling showed that annoyance led to lowered quality of life via the mediating construct residential satisfaction, which in turn was influenced by place attachment and perceived restoration possibilities in the dwelling. Stress had a negative impact on quality of life, but was not directly correlated to annoyance. Stress was however correlated with sensitivity. The findings suggest that dose-response relationships for environmental stressors should be studied in a broader context of environmental and individual factors. Also relatively low levels of exposure should be mitigated, especially if several stressors are present.
城市密度增加会使城市居民接触到更多噪音、光线、气味和振动。即使接触水平相对较低,多种环境压力源侵入家中也可能增加对健康产生不利影响的风险。本研究评估了城市地区常见的潜在环境压力源组合所导致的烦恼发生率以及与健康状况的关联。通过邮件向哈尔姆斯塔德(瑞典)五个具有相似社会经济和住房特征但暴露情况不同的地区的居民发送了问卷(回复率56%;n = 385)。在受访者中,50%至少对一种所提及的压力源感到某种程度的烦恼,最常见的是当地交通产生的噪音和振动。结构方程模型显示,烦恼通过中介变量居住满意度导致生活质量下降,而居住满意度又受到场所依恋和住所中感知到的恢复可能性的影响。压力对生活质量有负面影响,但与烦恼没有直接关联。然而,压力与敏感性相关。研究结果表明,应在更广泛的环境和个体因素背景下研究环境压力源的剂量反应关系。即使暴露水平相对较低也应加以缓解,尤其是在存在多种压力源的情况下。