[1] D'Argenio, D. Z., Schumitzky, A., Wang, X.:
ADAPT 5 User's Guide: Pharmacokinetic/Pharmacodynamic Systems Analysis Software. Biomedical Simulations Resource, Los Angeles (2009), Available at
https://bmsr.usc.edu/software/adapt/users-guide/
[2] Dhillon, S., Kostrzewski, A., (eds.): Clinical Pharmacokinetics. Pharmaceutical Press, London (2006).
[3] Tebbens, J. Duintjer, Azar, M., Friedmann, E., Lanzendörfer, M., Pávek, P.:
Mathematical models in the description of pregnane X receptor (PXR)-regulated cytochrome P450 enzyme induction. Int. J. Mol. Sci. 19 (2018), 1785.
DOI 10.3390/ijms19061785
[4] Funahashi, A., Morohashi, M., Kitano, H., Tanimura, N.:
CellDesigner: a process diagram editor for gene-regulatory and biochemical networks. BIOSILICO 1 (2003), 159-162.
DOI 10.1016/s1478-5382(03)02370-9
[6] Hindmarsh, A. C.:
Large ordinary differential equation systems and software. Control Systems Magazine 2 (1982), 24-30.
DOI 10.1109/mcs.1982.1103756
[7] Hindmarsh, A. C.:
ODEPACK, a systematized collection of ODE solvers. Scientific Computing 1982 R. S. Stepleman et al. IMACS Transactions on Scientific Computation I, North-Holland Publishing, Amsterdam (1983), 55-64.
MR 0751604
[8] Jones, H. M., Rowland-Yeo, K.:
Basic Concepts in Physiologically Based Pharmacokinetic Modeling in Drug Discovery and Development. CPT: Pharmacometrics & Systems Pharmacology 2 (2013), Article ID e63, 12 pages.
DOI 10.1038/psp.2013.41
[9] Luke, N. S., DeVito, M. J., Shah, I., El-Masri, H. A.:
Development of a quantitative model of pregnane X receptor (PXR) mediated xenobiotic metabolizing enzyme induction. Bull. Math. Biol. 72 (2010), 1799-1819.
DOI 10.1007/s11538-010-9508-5 |
MR 2728006 |
Zbl 1202.92029
[10] Lukšan, L., Tůma, M., Matonoha, C., Vlček, J., Ramešová, N., Šiška, M., Hartman, J.:
UFO 2017. Interactive System for Universal Functional Optimization. Technical Report V-1252, Institute for Computer Science CAS, Praha, 2017. Available at
http://www.cs.cas.cz/luksan/ufo.html
[11] Lunn, D. J., Best, N., Thomas, A., Wakefield, J., Spiegelhalter, D. J.:
Bayesian analysis of population PK/PD models: General concepts and software. J. Pharmacokinetics Pharmacodynamics 29 (2002), 271-307.
DOI 10.1023/A:1020206907668
[16] Petzold, L.:
Automatic selection of methods for solving stiff and nonstiff systems of ordinary diferential equations. SIAM J. Sci. Stat. Comput. 4 (1983), 136-148.
DOI 10.1137/0904010 |
MR 0689694 |
Zbl 0518.65051
[17] Shargel, L., Yu, A. B. C.: Applied Biopharmaceutics & Pharmacokinetics. McGraw-Hill Education, New York (2016).
[19] Spruill, J. W., Wade, W. E., DiPiro, T. J., Blouin, A. R., Pruemer, M. J.: Concepts in Clinical Pharmacokinetics. American Society of Health-System Pharmacists, Bethesda (2014).
[20] Zhao, P., Rowland, M., Huang, S.-M.:
Best practice in the use of physiologically based pharmacokinetic modeling and simulation to address clinical pharmacology regulatory questions. Clinical Pharmacology & Therapeutics 92 (2012), 17-20.
DOI 10.1038/clpt.2012.68
[21] Zheng, Z., Stewart, P. S.:
Penetration of rifampin through staphylococcus epidermidis biofilms. Antimicrob. Agents Chemoter 46 (2002), 900-903.
DOI 10.1128/aac.46.3.900-903.2002