Applied Mathematics and Mechanics (English Edition) ›› 2008, Vol. 29 ›› Issue (4): 549-558 .doi: https://doi.org/10.1007/s10483-008-0414-7
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LIU Li, ZHOU Shao-dan, LU Hong-wen, XIE Fen, XU Wen-bo
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Abstract: A new method for parameter optimization of pharmacokinetics based on an artificial immune network named PKAIN is proposed. To improve local searching ability of the artificial immune network, a partition-based concurrent simplex mutation is developed. By means of evolution of network cells in the PKAIN artificial immune network, an optimal set of parameters of a given pharmacokinetic model is obtained. The Laplace transform is applied to the pharmacokinetic differential equations of remifentanil and its major metabolite, remifentanil acid. The PKAIN method is used to optimize parameters of the derived compartment models. Experimental results show that the two-compartment model is sufficient for the pharmacokinetic study of remifentanil acid for patients with mild degree of renal impairment.
Key words: artificial immune network, pharmacokinetics, compartment model, simplex, remifentanil
2010 MSC Number:
TP273
68T20
LIU Li;ZHOU Shao-dan;LU Hong-wen;XIE Fen;XU Wen-bo. Parameter optimization of pharmacokinetics based on artificial immune network. Applied Mathematics and Mechanics (English Edition), 2008, 29(4): 549-558 .
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URL: https://www.amm.shu.edu.cn/EN/10.1007/s10483-008-0414-7
https://www.amm.shu.edu.cn/EN/Y2008/V29/I4/549