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Particle Manipulation by Optical Forces in Microfluidic Devices

机译:微流控设备中的光学力对粒子的操纵

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摘要

Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an increasing interest among the scientific community. Indeed, the advantages and the possibilities of this technique are unsubtle, allowing for the manipulation of small particles with a broad spectrum of dimensions (nanometers to micrometers size), with no physical contact and without affecting the sample viability. Thus, optical manipulation rapidly found a large set of applications in different fields, such as cell biology, biophysics, and genetics. Moreover, large benefits followed the combination of optical manipulation and microfluidic channels, adding to optical manipulation the advantages of microfluidics, such as a continuous sample replacement and therefore high throughput and automatic sample processing. In this work, we will discuss the state of the art of these optofluidic devices, where optical manipulation is used in combination with microfluidic devices. We will distinguish on the optical method implemented and three main categories will be presented and explored: (i) a single highly focused beam used to manipulate the sample, (ii) one or more diverging beams imping on the sample, or (iii) evanescent wave based manipulation.
机译:自从阿什金(Ashkin)和同事的开创性工作开始于1970年,光学操纵在科学界引起了越来越多的兴趣。确实,该技术的优势和可能性是微不足道的,它允许在不进行物理接触且不影响样品活力的情况下操作具有宽范围尺寸(纳米至微米大小)的小颗粒。因此,光学操纵迅速地在细胞生物学,生物物理学和遗传学等不同领域中发现了大量应用。此外,光操纵和微流体通道的组合带来了巨大的好处,这为光操纵增加了微流体的优势,例如连续更换样品,从而实现了高通量和自动样品处理。在这项工作中,我们将讨论这些光流控设备的最新技术,其中光操纵与微流控设备结合使用。我们将区分所实施的光学方法,将介绍和探讨三个主要类别:(i)用于处理样品的单个高度聚焦的光束,(ii)撞击样品的一个或多个发散光束,或(iii))逝基于波浪的操纵。

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