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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Influence of a between-run component of variation, choice of control limits, and shape of error distribution on the performance characteristics of rules for internal quality control.
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Influence of a between-run component of variation, choice of control limits, and shape of error distribution on the performance characteristics of rules for internal quality control.

机译:两次运行之间的差异,控制极限的选择以及误差分布的形状对内部质量控制规则的性能特征的影响。

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A computer-stimulation study has been performed to determine how the performance characteristics of quality-control rules are affected by the presence of a between-run component of variation, the choice of control limits (calculated from within-run vs. total standard deviations), and the shape of the error distribution. When a between-run standard deviation (Sb) exists and control limits are calculated from the total standard deviation (St, which includes Sb as well as the within-run standard deviation, Sw), there is generally a loss in ability to detect analytical disturbances or errors. With control limits calculated from Sw, there is generally an increase in the level of false rejections. The presence of non-gaussian error distribution appears to have considerably less effect. It can be recommended that random error be controlled by use of a chi-square or range-control rule, with control limits calculated from Sw. Optimal control of systematic errors is difficult when Sb exists. An effort should be made to reduce Sb, and this will lead to increased ability to detect analytical errors. When Sb is tolerated or accepted as part of the baseline state of operation for the analytical method, then further increases in the number of control observations will be necessary to achieve a given probability for error detection.
机译:已经进行了计算机刺激研究,以确定质量控制规则的性能特征如何受到批次间变异的存在,控制限的选择(根据批次内与总标准偏差的计算)的影响,以及误差分布的形状。如果存在运行间标准偏差(Sb),并且从总标准偏差(St,其中包括Sb以及运行内标准偏差Sw)计算出控制极限,则通常会降低检测分析物的能力。干扰或错误。根据Sw计算的控制极限,误剔除的水平通常会增加。非高斯误差分布的出现似乎影响较小。建议使用卡方或范围控制规则来控制随机误差,并根据Sw计算出控制极限。当Sb存在时,系统误差的最佳控制是困难的。应该努力减少Sb,这将导致检测分析错误的能力增强。当Sb被允许或被接受为分析方法的基线操作状态的一部分时,则有必要进一步增加控制观测值的数量,以实现给定的错误检测概率。

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