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温哥华都会区体感温度与空气污染对老年人群死亡率的影响

Apparent temperature and air pollution vs. elderly population mortality in Metro Vancouver.

机构信息

Fraser Health, Environmental Health Services, New Westminster, British Columbia, Canada.

出版信息

PLoS One. 2011;6(9):e25101. doi: 10.1371/journal.pone.0025101. Epub 2011 Sep 28.

Abstract

BACKGROUND

Meteorological conditions and air pollution in urban environments have been associated with general population and elderly mortality, showing seasonal variation.

OBJECTIVES

This study is designed to evaluate the relationship between apparent temperature (AT) and air pollution (PM₂.₅) vs. mortality in elderly population of Metro Vancouver.

METHODS

Statistical analyses are performed on moving sum daily mortality rates vs. moving average AT and PM₂.₅ in 1-, 2-, 3-, 5-, and 7-day models for all seasons, warm temperatures above 15°C, and cold temperatures below 10°C.

RESULTS

Approximately 37% of the variation in all-season mortality from circulatory and respiratory causes can be explained by the variation in 7-day moving average apparent temperature (r² = 0.37, p<0.001). Although the analytical results from air pollution models show increasingly better prediction ability of longer time-intervals (r² = 0.012, p<0.001 in a 7-day model), a very weak negative association between elderly mortality and air pollution is observed.

CONCLUSIONS

Apparent temperature is associated with mortality from respiratory and circulatory causes in elderly population of Metro Vancouver. In a changing climate, one may anticipate to observe potential health impacts from the projected high- and particularly from the low-temperature extremes.

摘要

背景

城市环境中的气象条件和空气污染与一般人群和老年人的死亡率有关,且呈现季节性变化。

目的

本研究旨在评估大温哥华都会区老年人群体中,体感温度(AT)和空气污染(PM₂.₅)与死亡率之间的关系。

方法

在所有季节、高于 15°C 的温暖温度和低于 10°C 的寒冷温度下,对 1、2、3、5 和 7 天模型中逐日死亡率与平均 AT 和 PM₂.₅的移动总和进行统计分析。

结果

大约 37%的循环系统和呼吸系统疾病导致的全季节死亡率变化可以用 7 天移动平均体感温度的变化来解释(r²=0.37,p<0.001)。尽管空气污染模型的分析结果显示,较长时间间隔的预测能力逐渐提高(7 天模型中 r²=0.012,p<0.001),但观察到老年人群体死亡率与空气污染之间存在非常微弱的负相关。

结论

体感温度与大温哥华都会区老年人群体的呼吸系统和循环系统疾病死亡率有关。在气候变化的情况下,人们可能会观察到预期的高温,特别是低温极端天气对健康的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e3/3182192/94f812340997/pone.0025101.g001.jpg

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