靶向给药控制器验证的实验纳米医学平台

I. Birs, C. Muresan, S. Folea, O. Prodan
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引用次数: 11

摘要

靶向给药具有副作用小、作用快、药物吸收好、用量少等优点,是近年来纳米医学领域研究的热点。这篇论文提出了一个模拟循环系统的实验平台:血液从动脉流向较小的血管,同时也捕捉到了血液的非牛顿特性。通过配备各种传感器和执行器的可扩展潜水器确保靶向药物递送,从而可以确定和控制潜水器在循环系统中的实时位置。本文的目的是为潜水器与非牛顿流体之间相互作用的实验建模以及验证适用于速度控制的不同控制策略提供坚实的基础。实验设置考虑到现实生活中靶向药物递送的困难。
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An experimental nanomedical platform for controller validation on targeted drug delivery
Targeted drug delivery is a focus point in recent advances in the nanomedical field due to its many advantages such as decreased side effects, faster action and better drug absorption with less substance used. The paper presents an experimental platform that simulates the circulatory system: the passing of blood from arteries to smaller blood vessels, while also capturing the non-Newtonian characteristic of the blood. The targeted drug delivery is ensured by a scalable submersible equipped with various sensors and actuators such that the real-time position of the submersible can be determined and controlled in the circulatory system. The purpose of the presented work is to provide a solid foundation for experimental modeling of the interaction between the submersible and non-Newtonian fluids and for validating different control strategies suitable for velocity control. The experimental setup takes into account the real life difficulties of targeted drug delivery.
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