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首页> 外文期刊>Toxicological and Environmental Chemistry >Single-stage versus two-stage models to estimate creatinine corrected urinary analyte concentrations
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Single-stage versus two-stage models to estimate creatinine corrected urinary analyte concentrations

机译:单阶段和两阶段模型可估算肌酐校正后的尿液分析物浓度

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摘要

The ability to detect 'known' differences in urinary analyte concentrations due to gender, age, and race/ethnicity when adjusted for similar differences in urinary creatinine concentrations were evaluated by a single-stage and a two-stage model by ten simulation studies. Log10 transformed values of observed urinary analyte concentration were used as the dependent variable and age, gender, and race/ethnicity were used as the categorical independent variables. In addition, while single-stage model used log10 transformed values of urinary creatinine as a covariate, two-stage model used a correction factor (CF) determined during the first stage of the model by fitting a secondary model for urinary creatinine. Single-stage model was almost always able to statistically significantly detect 'known' differences due to age, gender, and race/ethnicity. On the other hand, two-stage model was able to statistically significantly detect 'known' differences due to age, gender, and race/ethnicity a maximum of 87.2% of the times and as low as 10.6% of the times primarily because of the presence of multicollinearity between CF and urinary creatinine concentrations. Consequently, as long as the sole objective is to estimate the urinary analyte concentrations adjusted for the effect of all factors including urinary creatinine, single-stage models are the models of choice.
机译:通过单阶段模型和两阶段模型,通过十个模拟研究,评估了针对性别,年龄和种族/种族而对尿分析物浓度的“已知”差异进行校正的能力,并通过单阶段和两阶段模型进行了评估。观察到的尿液分析物浓度的Log10转换值用作因变量,年龄,性别和种族/民族作为分类自变量。另外,单阶段模型使用尿肌酐的log10变换值作为协变量,而两阶段模型则通过在模型的第一阶段通过拟合尿肌酐的二级模型来确定校正因子(CF)。单阶段模型几乎总是能够统计地发现由于年龄,性别和种族/民族而产生的“已知”差异。另一方面,两阶段模型能够从统计学上显着地检测出由于年龄,性别和种族/族裔而导致的“已知”差异,最多可达到87.2%,而可低至10.6%。 CF和尿肌酐浓度之间存在多重共线性。因此,只要唯一的目的是估计针对所有因素(包括尿肌酐)的影响而调整的尿分析物浓度,就可以选择单阶段模型。

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