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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Evaluation of Assigned-Value Uncertainty for Complex Calibrator Value Assignment Processes: A Prealbumin Example
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Evaluation of Assigned-Value Uncertainty for Complex Calibrator Value Assignment Processes: A Prealbumin Example

机译:复杂校准物值分配过程的赋值不确定性评估:前白蛋白示例

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Background: Errors of calibrator-assigned values lead to errors in the testing of patient samples. The ability to estimate the uncertainties of calibrator-assigned values and other variables minimizes errors in testing processes. International Organization of Standardization guidelines provide simple equations for the estimation of calibrator uncertainty with simple value-assignment processes, but other methods are needed to estimate uncertainty in complex processes.Methods: We estimated the assigned-value uncertainty with a Monte Carlo computer simulation of a complex value-assignment process, based on a formalized description of the process, with measurement parameters estimated experimentally. This method was applied to study uncertainty of a multilevel calibrator value assignment for a prealbumin immunoassay.Results: The simulation results showed that the component of the uncertainty added by the process of value transfer from the reference material CRM470 to the calibrator is smaller than that of the reference material itself (0.8% vs 3.7%). Varying the process parameters in the simulation model allowed for optimizing the process, while keeping the added uncertainty small. The patient result uncertainty caused by the calibrator uncertainty was also found to be small.Conclusions: This method of estimating uncertainty is a powerful tool that allows for estimation of calibrator uncertainty for optimization of various value assignment processes, with a reduced number of measurements and reagent costs, while satisfying the requirements to uncertainty. The new method expands and augments existing methods to allow estimation of uncertainty in complex processes.
机译:背景:校准物分配值的错误会导致患者样品测试的错误。估计校准器分配值和其他变量的不确定性的能力使测试过程中的误差最小化。国际标准化组织准则提供了简单的方程式,用于通过简单的值分配过程来估算校准器不确定性,但是还需要其他方法来估算复杂过程中的不确定性。方法:我们使用蒙特卡洛计算机模拟来估算分配值的不确定性复杂的价值分配过程,基于对过程的形式化描述,并通过实验估算出测量参数。结果:仿真结果表明,从标准物质CRM470到校准品的价值转移过程所增加的不确定性成分比标准白蛋白免疫测定的不确定度成分要小。参考材料本身(<0.8%比3.7%)。在仿真模型中改变过程参数可以优化过程,同时保持较小的不确定性。结论:这种不确定度估算方法是一个强大的工具,可以估算校准物不确定度,以优化各种值分配过程,同时减少测量和试剂的数量。成本,同时满足不确定性的要求。新方法扩展和扩充了现有方法,可以估算复杂过程中的不确定性。

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