电力工人之间磁场的日变化:测量策略的后果。

M P van der Woord, H Kromhout, L Barregård, P Jonsson
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引用次数: 10

摘要

本文调查了50 hz磁场下电力工人的职业暴露情况,以探讨:(1)暴露变异性的组成部分,(2)短期测量之间的自相关模式,以及(3)短期测量导致的不精确和误分类。对来自10个职业亚组的42名电力公司工作人员在81个工作日内每10秒进行一次现场测量,并对同一公司的4名办公室工作人员在8个工作日内进行现场测量。对于8小时时间加权平均(TWA)磁场,可变性被划分为其组成部分:工人内部,工人之间和组之间。对于磁场的点测量,也检查了日内方差分量。确定了自相关函数,并评估了可靠估计8小时TWA磁场所需的短期测量次数。现场测量的磁场,以及8小时TWA磁场,在工人中近似对数正态分布。电力工人的平均磁场暴露量为0.47微t (n = 81天),办公室工作人员的平均磁场暴露量为0.12微t (n = 8天)。很大一部分,即现场测量总方差的76%,可归因于天内的变异性。对于8小时TWA磁场,组间变异性较小,与工人间变异性大小相同。在30分钟的时间段内,7.5分钟、15分钟和30分钟的短期平均值之间存在显著的自相关性。一小时平均值无自相关。模拟表明,由于高度的日内变异性和自相关性,对电力公司工人进行的有限数量的短期磁场测量可能导致对8小时TWA磁场的不精确估计。因此,依赖于短期(现场)测量的测量策略很可能导致暴露的错误分类,从而缺乏或虚假的暴露-反应关系。
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Within-day variability of magnetic fields among electric utility workers: consequences for measurement strategies.

Occupational exposure to 50-Hz magnetic fields was surveyed among electric utility workers to investigate (1) components of exposure variability, (2) patterns of autocorrelation between short-term measurements, and (3) imprecision and misclassification due to short-term measurements. Spot measurements every 10 seconds during 81 working days were analyzed for 42 electric utility workers from 10 occupational subgroups and during 8 working days for 4 office workers from the same company. For the 8-hour time-weighted average (TWA) magnetic fields, the variability was partitioned into its components: within workers, between workers, and between groups. For spot measurements of magnetic fields, the within-day variance component also was examined. Autocorrelation functions were determined and numbers of short-term measurements necessary for reliable estimates of 8-hour TWA magnetic fields were assessed. Spot measurements of magnetic fields, as well as 8-hour TWA magnetic fields, were approximately log normally distributed among workers. The mean exposure to magnetic fields was 0.47 microT (n = 81 days) in electric utility workers and 0.12 microT (n = 8 days) in office workers. A large fraction, 76% of the spot measurements total variance, could be attributed to variability within days. For the 8-hour TWA magnetic fields, between-group variability was small and of the same magnitude as between-worker variability. Significant autocorrelations between short-term averages of 7.5, 15, and 30 minutes were present, when taken within periods of 30 minutes. One-hour averages showed no autocorrelation. Simulations showed that, due to high within-day variability and autocorrelation, a limited number of short-term measurements of magnetic fields in electric utility workers are likely to result in imprecise estimates of 8-hour TWA magnetic fields. Measurement strategies relying on short-term (spot) measurements are therefore likely to result in misclassification of exposure and consequently absent or spurious exposure-response relations.

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