生物医学多用途微流控系统的优化

B. Firtat, P. Schiopu
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引用次数: 0

摘要

计算流体力学(CFD)方法在现代生物医疗器械的设计和优化中起着关键作用。药物输送系统有效地将少量药物提供给所需的人体靶组织。数值模拟的目的是优化微流体药物输送系统能够输送流体的连续(层流)流和产生液滴。使用两种类型的流体,缓冲液和药物溶液,流动模式完全取决于流体的性质及其流速。药物液滴(包含在生物流体中的液滴,如血液或分散在呼吸空气中的液滴-气溶胶)和生物缓冲液中药物的减少层流(通过流体动力学聚焦)。CFD模拟的结果提供了必要的信息,可用于开发或改进临床应用的药物输送系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimisation of a multi-purpose microfluidic system for bio-medical applications
CFD (Computational Fluid Dynamics) methods play a key-role in the design and optimization of modern bio-medical devices. Drug delivery systems efficiently provide small quantities of drugs to the desired human body target tissue. Numerical simulations are performed with the purpose to optimize a microfluidic drug delivery system capable of delivering fluids both by continuous (laminar) flow and by generating fluid droplets. Two types of fluids, a buffer and a drug solution are used, and the flow mode solely depends on the fluids properties and their flow rates. Drugs fluid droplets (either liquid droplets contained in a bio-fluid, such as blood or liquid droplets dispersed in the breathing air - aerosols) and reduced laminar flow (by means of hydrodynamic focusing) of drugs within biological buffers are presented. The results of the CFD simulations provide the necessary information and can be used to develop or improve drug delivery systems for clinical applications.
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