Variability of the model-independent AUC: the one sample per individual case.

W Jawień
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引用次数: 6

Abstract

A theory is developed for estimation of a population value of AUC along with its standard deviation, in the case, when only one concentration-time (C-t) sample is available for each individual. This theory is based on model-independent pharmacokinetics. Integration methods are classified due to their applicability to the presented approach. The main goal of this work is to establish a statistical hypothesis-testing procedure which would make single C-t samples usable for bioequivalence studies. An application of the theory to a number of integration methods currently in use is analyzed in detail. A real data illustration is included.

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与模型无关的AUC的可变性:每个个案一个样本。
在每个个体只有一个浓度-时间(C-t)样本的情况下,开发了一种理论,用于估计AUC的总体值及其标准差。该理论建立在模型无关的药代动力学基础上。根据所提出方法的适用性对集成方法进行了分类。这项工作的主要目标是建立一个统计假设检验程序,使单个C-t样品可用于生物等效性研究。详细分析了该理论在目前常用的几种积分方法中的应用。包括一个真实的数据说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Edward R. Garrett 1920–1993 Edward R. Garrett: A biographical sketch Erratum to: Simple approximate formulas for calculating the time to clear drug and the time to accumulate drug when the plasma disposition curve of the drug is multiexponential Erratum to: Simplified methods for the evaluation of the parameters of the time course of plasma concentration in the one-compartment body model with first-order invasion and first-order drug elimination including methods for ascertaining when such rate constants are equal Erratum to: Comparative physiological pharmacokinetics of fenatyl and alfenatil in rats and humans based on parametric single-tissue models
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