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A review on optical actuators for microfluidic systems

机译:微流体系统光学执行器的综述

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摘要

During the last few decades microfluidic systems have become more and more popular and their relevance in different fields is continually growing. In fact, the use of microchannels allows a significant reduction of the required sample-volume and opens the way to a completely new set of possible investigations, including the study of the properties of cells, the development of new cells' separation techniques and the analysis of single-cell proteins. One of the main differences between microscopic and macroscopic systems is obviously dictated by the need for suitable actuation mechanisms, which should allow precise control of microscopic fluid volumes and of micro-samples inside the fluid. Even if both syringe-pump and pneumatic-pump technologies significantly evolved and they currently enable sub-mu L samples control, completely new approaches were recently developed for the manipulation of samples inside the microchannel. This review is dedicated to describing different kinds of optical actuators that can be applied in microfluidic systems for sample manipulation as well as for pumping. The basic principles underlying the optical actuation mechanisms will be described first, and then several experimental demonstrations will be reviewed and compared.
机译:在过去的几十年中,微流体系统变得越来越受欢迎,并且在不同领域的相关性是不断增长的。事实上,微通道的使用允许显着降低所需的样品体积,并打开了一种全新的可能研究的方式,包括研究细胞性质的研究,新细胞的分离技术和分析的发展单细胞蛋白质。显微镜和宏观系统之间的主要差异之一明显是针对合适的致动机构的需要,这应该允许精确地控制微观流体体积和流体内部的微样。即使注射器 - 泵和气动泵技术都显着发展,它们目前能够使Sub-Mu L样品控制,最近最近开发了全新的方法,用于操纵微通道内的样品。该审查专用于描述可用于微流体系统的不同类型的光学致动器,以进行样品操作以及泵送。首先将描述光致动机制的基本原理,然后将进行若干实验演示并进行比较。

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