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微流控技术在生物学中的应用。

The application of microfluidics in biology.

作者信息

Holmes David, Gawad Shady

机构信息

School of Electronics and Computer Science, Highfield, University of Southampton, Southampton, UK.

出版信息

Methods Mol Biol. 2010;583:55-80. doi: 10.1007/978-1-60327-106-6_2.

Abstract

Recent advances in the bio- and nanotechnologies have led to the development of novel microsystems for bio-particle separation and analysis. Microsystems are already revolutionising the way we do science and have led to the development of a number of ultrasensitive bioanalytical devices capable of analysing complex biological samples. These devices have application in a number of diverse areas such as pollution monitoring, clinical diagnostics, drug discovery and biohazard detection. In this chapter we give an overview of the physical principles governing the behaviour of fluids and particles at the micron scale, which are relevant to the operation of microfluidic devices. We briefly discuss some of the fabrication technologies used in the production of microfluidic systems and then present a number of examples of devices and applications relevant to the biological and life sciences.

摘要

生物和纳米技术的最新进展促使了用于生物颗粒分离和分析的新型微系统的发展。微系统已经在彻底改变我们进行科学研究的方式,并催生了许多能够分析复杂生物样本的超灵敏生物分析设备。这些设备在污染监测、临床诊断、药物研发和生物危害检测等诸多不同领域都有应用。在本章中,我们将概述微米尺度下流体和颗粒行为所遵循的物理原理,这些原理与微流控设备的运行相关。我们将简要讨论微流控系统生产中使用的一些制造技术,然后介绍一些与生物和生命科学相关的设备及应用实例。

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