Active Flow Control and Dynamic Analysis in Droplet Microfluidics.

Nan Shi, Md Mohibullah, Christopher J Easley
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引用次数: 5

Abstract

Droplet-based microfluidics has emerged as an important subfield within the microfluidic and general analytical communities. Indeed, several unique applications such as digital assay readout and single-cell sequencing now have commercial systems based on droplet microfluidics. Yet there remains room for this research area to grow. To date, most analytical readouts are optical in nature, relatively few studies have integrated sample preparation, and passive means for droplet formation and manipulation have dominated the field. Analytical scientists continue to expand capabilities by developing droplet-compatible method adaptations, for example, by interfacing to mass spectrometers or automating droplet sampling for temporally resolved analysis. In this review, we highlight recently developed fluidic control techniques and unique integrations of analytical methodology with droplet microfluidics-focusing on automation and the connections to analog/digital domains-and we conclude by offering a perspective on current challenges and future applications.

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液滴微流体的主动流动控制与动力学分析。
基于液滴的微流控已经成为微流控和一般分析领域的一个重要分支。事实上,一些独特的应用,如数字分析读出和单细胞测序,现在有基于微滴微流体的商业系统。然而,这一研究领域仍有发展的空间。迄今为止,大多数分析读数本质上是光学的,相对较少的研究集成了样品制备,液滴形成和操作的被动手段在该领域占主导地位。分析科学家继续通过开发与液滴兼容的方法来扩展能力,例如,通过与质谱仪连接或自动化液滴取样来进行时间分辨分析。在这篇综述中,我们重点介绍了最近发展的流体控制技术和分析方法与液滴微流体的独特集成-重点是自动化和与模拟/数字领域的联系-我们最后提出了当前挑战和未来应用的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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