COMPUTATIONAL MODELING OF INTRAOCULAR DRUG TRANSPORT

M. Milošević, N. Di Trani, V. Simić, A. Grattoni, M. Kojic
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Abstract

In this work we present computational model for intraocular drug transport using coupled convective-diffusive equations. Model can simulate drug transport using either injection or by state of the art implant devices. We are using Navier-Stokes equation for fluid flow in vitreous humor, and composite smeared finite element (CSFE) for convection in rest of the eye and also for diffusion within the whole model. CSFE takes into account blood vessel properties, such as hydraulic and diffusive components. User interface tool CAD for pre- and post- processing is constructed which enables generation of geometries for patient specific purposes. Computational model provides results in a form convenient for investigation of effects of the drugs on different diseases, such as diabetic macular edema, uveitis, etc. This computational platform has potentials to become a powerful tool for optimization of therapies and simulation of different drugs.
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眼内药物转运的计算模型
在这项工作中,我们提出了使用耦合对流扩散方程的眼内药物运输的计算模型。模型可以模拟药物运输使用注射或由最先进的植入装置。我们使用Navier-Stokes方程来计算玻璃体内的流体流动,并使用复合涂抹有限元(CSFE)来计算眼睛其余部分的对流以及整个模型内的扩散。CSFE考虑了血管特性,如液压和扩散成分。用户界面工具CAD的预处理和后处理的构建,使生成的几何形状,为病人的具体目的。计算模型以方便研究药物对不同疾病的影响的形式提供结果,如糖尿病性黄斑水肿、葡萄膜炎等。这个计算平台有潜力成为优化治疗和模拟不同药物的强大工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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