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Math Biosci ; 253: 11-8, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24721554

ABSTRACT

A virtual pharmacokinetic 3D model of the human eye is built using Comsol Multiphysics® software, which is based on the Finite Element Method (FEM). The model considers drug release from a polymer patch placed on sclera. The model concentrates on the posterior part of the eye, retina being the target tissue, and comprises the choroidal blood flow, partitioning of the drug between different tissues and active transport at the retina pigment epithelium (RPE)-choroid boundary. Although most straightforward, in order to check the mass balance, no protein binding or metabolism is yet included. It appeared that the most important issue in obtaining reliable simulation results is the finite element mesh, while time stepping has hardly any significance. Simulations were extended to 100,000 s. The concentration of a drug is shown as a function of time at various points of retina, as well as its average value, varying several parameters in the model. This work demonstrates how anybody with basic knowledge of calculus is able to build physically meaningful models of quite complex biological systems.


Subject(s)
Eye/metabolism , Models, Biological , Computer Simulation , Drug Delivery Systems , Eye/anatomy & histology , Eye/drug effects , Eye Diseases/drug therapy , Eye Diseases/metabolism , Humans , Imaging, Three-Dimensional , Mathematical Concepts , Models, Anatomic , Software , User-Computer Interface
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