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Uncertainty in measurement: A review of the procedures for determining uncertainty in measurement and its use in deriving the biological variation of the estimated glomerular filtration rate

机译:测量不确定度:对确定测量不确定度的程序及其在估算肾小球滤过率的生物学变化中的应用的回顾

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摘要

Procedures for assessing the uncertainty in measurement and estimates of biological variation are currently available for many measurands capable of direct analytical measurement. However, not all measurands or quantity values determined in a medical laboratory are provided by direct analytical measurement. Estimated glomerular filtration rate (eGFR) is such a quantity value. In this situation, the result is calculated from other measurements through a functional relationship in which the output value (the calculated quantity value) is derived from one or more input quantities by applying a defined mathematical equation.The aims of this review are: to summarise the principal methods for assessing uncertainty in measurement in complicated non-linear expressions; and to describe an approach for estimating the uncertainty in measurement and biological variation of the Chronic Kidney Disease Epidemiology Collaboration equations for eGFR. In practice, either the direct application of the propagation of uncertainty in measurement equation or a Monte Carlo simulation procedure using a readily available spreadsheet may be used to evaluate uncertainty in measurement or the propagation of biological variation.If the only recognised “uncertainty” is the biological variation in the measured serum creatinine, the equation for the propagation of uncertainties in measurement for the eGFR simplifies to an expression in which the coefficient of variation of the eGFR (or the biological variation of the eGFR) is directly proportional to the coefficient of variation of the measured serum creatinine (or the biological variation of the serum creatinine).
机译:目前,许多能够直接进行分析测量的被测物都有评估测量不确定度和估计生物变异的程序。但是,并非通过直接分析测量来提供医学实验室中确定的所有测量值或数量值。估计的肾小球滤过率(eGFR)就是这样一个数值。在这种情况下,通过函数关系从其他测量中计算出结果,通过应用定义的数学方程式从一个或多个输入量中得出输出值(计算出的量值)。本次审查的目的是:总结评估复杂非线性表达式中测量不确定度的主要方法;并描述一种估计eGFR的慢性肾脏病流行病学协作方程的测量值和生物学变化的不确定性的方法。在实践中,可以将不确定性的传播直接应用到测量方程中,或者使用易于使用的电子表格进行蒙特卡洛模拟程序来评估测量中的不确定性或生物变异的传播。如果唯一公认的“不确定性”是如果测量的血清肌酐具有生物学差异,则eGFR测量不确定性的传播方程式简化为一个表达式,其中eGFR的变异系数(或eGFR的生物学变异)与变异系数成正比血清肌酐的测定(或血清肌酐的生物学变化)。

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