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Analysis of Uncertainty due to Calibration in Clinical Laboratory Measurement Processes

机译:临床实验室测量过程中校准引起的不确定性分析

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The calibration of the instrument used in the analytical stage of a clinical laboratory testing process has a significant contribution to the uncertainty of the final measurement result. In this paper, we present the development of a mathematical model of the analytical stage of the serum cholesterol laboratory test that quantifies and integrates the uncertainties of the various components of the laboratory measurement system. Monte Carlo simulation is used to estimate the net uncertainty of associated with the measurement system. The model is further used to quantify the effect of uncertainty in calibration parameters on both the location and spread of the distribution of the final laboratory measurement result. In addition, the effect of the choice of calibrator concentration levels on the uncertainty of the measurement is quantified using Monte Carlo simulation. The simulation is also used to identify the optimal calibrator concentration levels that minimize uncertainty at medical decision points as well as across the patient concentration level range. The Monte Carlo methodology of optimal calibrator selection presented in this paper can be extended to linear calibration measurement systems in general.
机译:临床实验室检测过程的分析阶段中使用的仪器的校准对最终测量结果的不确定性具有显着贡献。在本文中,我们展示了血清胆固醇实验室试验的分析阶段的数学模型,这些模型量化并整合了实验室测量系统各种组成部分的不确定性。 Monte Carlo仿真用于估计与测量系统相关的净不确定性。该模型进一步用于量化不确定度在校准参数中的施加在最终实验室测量结果分布的位置和传播中的影响。此外,使用蒙特卡罗模拟量化校准浓度水平对测量的不确定性的影响。该模拟还用于识别最佳校准浓度水平,其最小化医学决策点的不确定性以及患者浓度级别范围。本文提出的最佳校准器选择的Monte Carlo方法可以扩展到线性校准测量系统。

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