Time Scale Calculus: A New Approach to Multi-Dose Pharmacokinetic Modeling
Abstract
In this paper, we use Time Scale Calculus (TSC) to formulate and solve pharmacokinetic models exploring multiple dose dynamics. TSC is a mathematical framework that allows the modeling of dynamical systems comprising continuous and discrete processes. This characteristic makes TSC particularly suited for multi-dose pharmacokinetic problems, which inherently feature a blend of continuous processes (such as absorption, metabolization, and elimination) and discrete events (drug intake). We use this toolkit to derive analytical expressions for blood concentration trajectories under various multi-dose regimens across several flagship pharmacokinetic models. We demonstrate that this mathematical framework furnishes an alternative and simplified way to model and retrieve analytical solutions for multi-dose dynamics. For instance, it enables the study of blood concentration responses to arbitrary dose regimens and facilitates the characterization of the long-term behavior of the solutions, such as their steady state.
Cite
@article{arxiv.2310.19984,
title = {Time Scale Calculus: A New Approach to Multi-Dose Pharmacokinetic Modeling},
author = {Santiago Torres Paz and Jose Ricardo Arteaga Bejarano},
journal= {arXiv preprint arXiv:2310.19984},
year = {2024}
}
Comments
42 pages, 5 figures