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Sources of Variability in Real-Time Monitoring Data for Fine Particulate Matter: Comparability of Three Wearable Monitors in an Urban Setting

机译:用于细颗粒物的实时监测数据的可变性来源:城市环境中三个可穿戴监视器的可比性

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摘要

The increasing availability of portable air pollution monitoring devices has greatly enhanced the ability to measure personal exposure in real time. However, the cost and specifications of these devices vary considerably, and questions about their reliability and practicality for use in epidemiological investigations remain. In this field study, three personal PM2.5 exposure monitors (two nephelometers and one optical particle counter) were compared in an urban setting to assess their feasibility for use in future studies. In total, 3963 1-min measurements were collected over 12 days from locations of several types (e.g., above- and below-ground subway stations, sidewalks next to urban traffic, outdoor construction sites, etc.) in the Washington, DC, metropolitan area. Overall, we observed moderate to high levels of agreement in pairwise comparisons of PM2.5 concentrations between devices (R-2 range of 0.37-0.75). Bland-Altman plots showed that differences in device agreement varied over the range of mean concentrations. In linear mixed models adjusting for temperature and relative humidity, we saw significant interaction between the device and location (p < 0.05), suggesting that the relationship between devices was not constant in all locations. Our finding of heterogeneity in instrument comparability by location may have important implications for epidemiologic studies incorporating personal PM2.5 measurements.
机译:便携式空气污染监测设备的增加的可用性大大提高了实时测量个人曝光的能力。然而,这些设备的成本和规格随之而变化,以及对流行病学调查的可靠性和实用性的问题仍然存在。在该实地研究中,在城市环境中比较了三种个人PM2.5暴露监视器(两个幼颊仪和一个光学粒子计数器),以评估他们在未来研究中使用的可行性。总共收集3963个1分钟的测量,从几种类型(例如,地下地铁站,城市交通,户外建筑工地等人行道上的地下站,户外建筑工地等人行道上)收集12天。区域。总体而言,我们观察到在设备之间的PM2.5浓度的成对比较方面的中度至高度协议(R-2范围为0.37-0.75)。 Bland-Altman情节表明,设备协议的差异在于平均浓度范围。在调整温度和相对湿度的线性混合模型中,我们在设备和位置之间看到了显着的相互作用(P <0.05),表明设备之间的关系在所有位置都不是恒定的。我们在仪器中的异质性通过地点的可比性可能对流行病学研究具有重要意义,包括个人PM2.5测量。

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  • 作者单位

    NCI Occupat &

    Environm Epidemiol Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

    NCI Occupat &

    Environm Epidemiol Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

    NCI Biostat Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

    NCI Occupat &

    Environm Epidemiol Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

    Univ Calif Davis Dept Publ Hlth Sci Div Environm &

    Occupat Hlth Davis CA 95616 USA;

    NCI Occupat &

    Environm Epidemiol Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

    NCI Biostat Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

    NCI Occupat &

    Environm Epidemiol Branch Div Canc Epidemiol &

    Genet NIH Bethesda MD 20850 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
  • 关键词

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