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Temporal and spatial variation in personal ambient temperatures for outdoor working populations in the southeastern USA

机译:美国东南部户外工作人群个人环境温度的时间和空间变化

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摘要

Excessive ambient temperature exposure can result in significant morbidity and mortality, especially among vulnerable occupational groups like outdoor workers. Average temperatures in the USA are projected to increase in frequency and intensity, placing future worker populations at greater risk for unhealthy levels of exposure. Unlike previous research focused on aggregate-level temperature exposures from in situ weather station data, this study will measure location-based personal ambient temperatures (PAT) at the individual-level by piloting the use of wearable sensor technology. A total of 66 outdoor workers in three geographically and climatologically diverse regions in the Southeast USA were continuously sampled during the workday for a 1-week period throughout July 11 to August 8 2016. Results indicate significant worker variation in temperature exposure within and between study locations; with PAT characterized by less pronounced variability as workers moved between indoor and outdoor environments. Developed land covers, a factor often associated with higher temperatures, were poorly correlated with PAT. Future analysis should focus on a worker's physiological response to PAT and mapping of spatial patterns of PAT for a larger worker population to produce innovative and targeted heat prevention programs.
机译:过度的环境温度暴露可能导致显着的发病率和死亡率,特别是弱势职业群体,如户外工人。预计美国的平均气温将增加频率和强度,将未来的工人群体放置更大的风险,以获得不健康的暴露程度。与以往的研究相比,专注于从原位气象站数据中的聚合级温度曝光,本研究将通过试验使用可穿戴传感器技术来测量基于位置的个人环境温度(PAT)。在2016年7月11日至8月8日,在工作日中共有66个地理上和气候上各个地区的三个地理上和气候上的户外工人在地理上和气候上繁多的地区。结果表明了研究地点内和研究地点内的温度暴露的重要工作变化;由于工人在室内和室外环境之间移动,帕特特征在于不太明显的变化。发达的陆地覆盖物,经常与较高温度相关的因素,与PAT相关。未来的分析应专注于工人的生理反应,对帕特和绘制较大的工人人口的空间模式,以产生创新和有针对性的预防计划。

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