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Drug Metabolism and Disposition: the Biological Fate of Chemicals|July 31, 2024
Predicting Clearance with Simple and Permeability-Limited Physiologically Based Pharmacokinetic Frameworks: Comparison of Well-Stirred, Dispersion, and Parallel-Tube Liver ModelsSwati Nagar, Rachel Parise, Ken Korzekwa
Methods in Molecular Biology (Clifton, N.J.)|July 17, 2021
Numerical Methods for Modeling Enzyme KineticsJaydeep Yadav, Ken Korzekwa, Swati Nagar
Drug Metabolism and Disposition: the Biological Fate of Chemicals|May 3, 2019
Impact of Lipid Partitioning on the Design, Analysis, and Interpretation of Microsomal Time-Dependent InactivationJaydeep Yadav, Ken Korzekwa, Swati Nagar
Clinical and Translational Science|May 19, 2022
A permeability- and perfusion-based PBPK model for improved prediction of concentration-time profilesKen Korzekwa, Casey Radice, Swati Nagar
Xenobiotica; the Fate of Foreign Compounds in Biological Systems|June 24, 2017
Numerical analysis of time-dependent inhibition kinetics: comparison between rat liver microsomes and rat hepatocyte data for mechanistic model fittingChuong Pham, Swati Nagar, Ken Korzekwa
Molecular Pharmaceutics|July 18, 2017
Continuous Intestinal Absorption Model Based on the Convection-Diffusion EquationSwati Nagar, Richard C Korzekwa, Ken Korzekwa
Drug Metabolism and Disposition: the Biological Fate of Chemicals|June 19, 2014
A numerical method for analysis of in vitro time-dependent inhibition data. Part 1. Theoretical considerationsSwati Nagar, Jeffrey P Jones, Ken Korzekwa
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