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首页> 外文期刊>Clinical chemistry and laboratory medicine: CCLM >Intermethod variation in serum carcinoembryonic antigen (CEA) measurement. fresh serum pools and control materials compared.
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Intermethod variation in serum carcinoembryonic antigen (CEA) measurement. fresh serum pools and control materials compared.

机译:血清癌胚抗原(CEA)测量方法间的差异。比较新鲜的血清库和对照材料。

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摘要

This study was undertaken to evaluate the feasibility of using commercial control materials in a regional external quality assessment scheme (EQAS) for serum carcinoembryonic antigen (CEA) measurement. We have assessed the commutability of 12 commercial control materials using five automated immunochemical systems. We compared the intermethod behavior of the materials with that of 12-14 patient serum pools. In a total of 48 comparisons (12 materials x 4 pairs of analytical systems), seven instances of non-commutability were apparent, as shown by normalized residuals falling outside the +/-3 interval. The use of non-commutable materials generates two negative effects. In EQAS, the interlaboratory variation recorded is not representative of the variation expected in the assay of patient sera; in interlaboratory harmonization programs, recalibration with non-commutable materials increases, instead of decreasing, the interlaboratory variation. Both these effects were shown to occur in CEA measurement with the tested materials and systems. The materials planned to be used in our EQAS turned out to be commutable: this gave us the guarantee of measuring realistic interlaboratory variation values, although the check for commutability should be extended to all the analytical systems used by the participants in the scheme.
机译:进行这项研究以评估在区域外部质量评估计划(EQAS)中使用商业控制​​材料进行血清癌胚抗原(CEA)测量的可行性。我们使用五个自动化免疫化学系统评估了12种商业对照材料的可交换性。我们比较了该材料与12-14位患者血清库的方法间行为。在总共48个比较中(12种材料x 4对分析系统),明显出现了7个不可交换性实例,如归一化残差落在+/- 3区间之外所显示。使用不可交换的材料会产生两个负面影响。在EQAS中,所记录的实验室间变化不代表患者血清测定中预期的变化。在实验室间的协调计划中,使用不可交换材料进行的重新校准会增加而不是减少实验室间的差异。这两种效应均显示在使用测试的材料和系统进行CEA测量中。计划在我们的EQAS中使用的材料证明是可互换的:尽管对可互换性的检查应扩展到方案参与者所使用的所有分析系统,但是这给我们提供了测量实际实验室间偏差值的保证。

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