首页> 外文期刊>Biopharmaceutics and Drug Disposition >Determination of drug absorption rate in time-variant disposition by direct deconvolution using beta clearance correction and end-constrained non-parametric regression.
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Determination of drug absorption rate in time-variant disposition by direct deconvolution using beta clearance correction and end-constrained non-parametric regression.

机译:通过使用β清除率校正和最终约束非参数回归的直接解卷积来确定时变处置中的药物吸收率。

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摘要

A novel numerical deconvolution method is presented that enables the estimation of drug absorption rates under time-variant disposition conditions. The method involves two components. (1) A disposition decomposition-recomposition (DDR) enabling exact changes in the unit impulse response (UIR) to be constructed based on centrally based clearance changes iteratively determined. (2) A non-parametric, end-constrained cubic spline (ECS) input response function estimated by cross-validation. The proposed DDR-ECS method compensates for disposition changes between the test and the reference administrations by using a beta the input response by the ECS method takes into consideration the complex absorption process and also ensures physiologically realistic approximations of the response. The stability of the new method to noisy data was evaluated by comprehensive simulations that considered different UIRs, various input functions, clearance changes and a novel scaling of the input function that includes the "flip-flop" absorption phenomena. The simulated input response was also analysed by two other methods and all three methods were compared for their relative performances. The DDR-ECS method provides better estimation of the input profile under significant clearance changes but tends to overestimate the input when there were only small changes in the clearance.
机译:提出了一种新颖的数值解卷积方法,该方法能够估计时变处置条件下的药物吸收率。该方法包括两个部分。 (1)能够基于迭代确定的基于中心的间隙变化构造单位冲激响应(UIR)的精确变化的处置分解-重组(DDR)。 (2)通过交叉验证估算的非参数,最终约束三次样条(ECS)输入响应函数。拟议的DDR-ECS方法通过使用beta补偿测试和参考管理之间的配置变化,ECS方法的输入响应考虑了复杂的吸收过程,还确保了响应的生理逼真近似值。通过综合仿真评估了该新方法对噪声数据的稳定性,该仿真考虑了不同的UIR,各种输入函数,游隙变化以及包括“触发器”吸收现象的输入函数的新颖缩放。还通过另外两种方法分析了模拟输入响应,并比较了这三种方法的相对性能。 DDR-ECS方法可以在间隙明显变化的情况下更好地估计输入配置文件,但是当间隙只有很小的变化时,往往会高估输入。

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