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Characterization of exposure to extremely low frequency magnetic fields using multidimensional analysis techniques.

机译:使用多维分析技术表征暴露于极低频磁场中的情况。

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Our lack of knowledge about the biological mechanisms of 50 Hz magnetic fields makes it hard to improve exposure assessment. To provide better information about these exposure measures, we use multidimensional analysis techniques to examine the relations between different exposure metrics for a group of subjects. We used a combination of a two stage Principal Component Analysis (PCA) followed by an ascending hierarchical classification (AHC) to identify a set of measures that would capture the characteristics of the total exposure. This analysis gives an indication of the aspects of the exposure that are important to capture to get a complete picture of the magnetic field environment. We calculated 44 metrics of exposure measures from 16 exposed EDF employees and 15 control subjects, containing approximately 20000 recordings of magnetic field measurements, taken every 30 s for 7 days with an EMDEX II dosimeter. These metrics included parameters used routinely or occasionally and some that were new. To eliminate those that expressed the least variability and that were most highly correlated to one another, we began with an initial Principal Component Analysis (PCA). A second PCA of the remaining 12 metrics enabled us to identify from the foreground 82.7% of the variance: the first component (62.0%) was characterized by central tendency metrics, and the second (20.7%) by dispersion characteristics. We were able to use AHC to divide the entire sample (of individuals) into four groups according to the axes that emerged from the PCA. Finally, discriminant analysis tested the discriminant power of the variables in the exposed/control classification as well as those from the AHC classification. The first showed that two subjects had been incorrectly classified, while no classification error was observed in the second. This exploratory study underscores the need to improve exposure measures by using at least two dimensions: intensity and dispersion. It also indicates the usefulness of constructing a typology of magnetic field exposures. Bioelectromagnetics 26:266-274, 2005. (c) 2005 Wiley-Liss, Inc.
机译:我们缺乏有关50 Hz磁场的生物机制的知识,因此很难改善暴露评估。为了提供有关这些暴露度量的更好的信息,我们使用多维分析技术来检查一组对象的不同暴露度量之间的关系。我们结合了两阶段主成分分析(PCA)和升序层次分类(AHC)的方法,以识别出一组可以反映总暴露特征的指标。该分析给出了暴露方面的指示,这些方面对于捕获以获取磁场环境的完整图片很重要。我们计算了来自16名EDF雇员和15名对照受试者的44项暴露量度指标,其中包含大约20000磁场记录记录,每30 s用EMDEX II剂量计进行7天。这些指标包括常规或偶尔使用的参数以及一些新参数。为了消除那些表达差异最小且相互之间相关性最高的变量,我们从初始的主成分分析(PCA)开始。其余12个指标中的第二个PCA使我们能够从前景中识别出82.7%的方差:第一个成分(62.0%)由集中趋势指标表征,第二个成分(20.7%)由分散特征指标表征。我们能够使用AHC根据PCA中出现的坐标轴将整个样本(个人)分为四组。最后,判别分析测试了暴露/对照分类以及AHC分类中变量的判别能力。第一个表明两个主题被错误分类,而第二个没有观察到分类错误。这项探索性研究强调需要至少使用两个维度(强度和色散)来改进暴露措施。它也表明构造磁场暴露类型的有用性。生物电磁学26:266-274,2005.(c)2005 Wiley-Liss,Inc.

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