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Analytical Quality Requirements in Human Biomonitoring Programs: Trace Elements in Human Blood

机译:人体生物监测计划中的分析质量要求:人体血液中的微量元素

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摘要

Human biomonitoring (HBM) programs consist of several interrelated and equally important steps. Of these steps, the study design must answer a specific question: How many individuals must be recruited in order to define the spatial or temporal trends of exposure to environmental pollutants in a given HBM study? Two components must be considered at this stage: the population variability of the expected exposure and the performance characteristics of the analytical methods used. The objective of the present study was to quantify the contribution to the required sample size arising from (i) measurement uncertainty and (ii) inter-laboratory measurement variability. For this purpose, the sample size was calculated using the measurement uncertainty of one laboratory, inter-laboratory comparison exercise data, and population variability for commonly studied metals (mercury, cadmium, and lead) in blood. Measurement uncertainty within one laboratory proved to have little influence on the sample size requirements, while the inter-laboratory variability of the three metals increased the requirements considerably, particularly in cases of low population variability. The multiple laboratories approach requires that laboratory variability be considered as early as the planning stage; a single-laboratory approach is thus a cost-effective compromise in HBM to reduce variability due to the participation of different laboratories.
机译:人类生物监测(HBM)计划由几种相互关联和同样重要的步骤组成。在这些步骤中,研究设计必须回答具体问题:必须招募多少个个人,以便在给定的HBM研究中定义暴露于环境污染物的空间或时间趋势?在此阶段必须考虑两种组分:预期暴露的人口可变性和使用的分析方法的性能特征。本研究的目的是量化(i)测量不确定性和(ii)实验室间测量变异性所产生的所需样本大小的贡献。为此目的,使用一个实验室,实验室间比较运动数据的测量不确定度来计算样品大小,以及血液中常用的金属(汞,镉和铅)的人口变异性。在一个实验室内的测量不确定性被证明对样品尺寸的要求几乎没有影响,而三种金属的实验室变异性增加了这些要求,特别是在人口变异性低的情况下。多个实验室方法要求尽早考虑实验室变化;因此,单实验室方法是HBM中具有成本效益的折衷,以降低不同实验室的参与导致的可变性。

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