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Optofluidic Device Based Microflow Cytometers for Particle/Cell Detection: A Review

机译:基于光流装置的微流细胞仪用于颗粒/细胞检测:综述

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摘要

Optofluidic devices combining micro-optical and microfluidic components bring a host of new advantages to conventional microfluidic devices. Aspects, such as optical beam shaping, can be integrated on-chip and provide high-sensitivity and built-in optical alignment. Optofluidic microflow cytometers have been demonstrated in applications, such as point-of-care diagnostics, cellular immunophenotyping, rare cell analysis, genomics and analytical chemistry. Flow control, light guiding and collecting, data collection and data analysis are the four main techniques attributed to the performance of the optofluidic microflow cytometer. Each of the four areas is discussed in detail to show the basic principles and recent developments. 3D microfabrication techniques are discussed in their use to make these novel microfluidic devices, and the integration of the whole system takes advantage of the miniaturization of each sub-system. The combination of these different techniques is a spur to the development of microflow cytometers, and results show the performance of many types of microflow cytometers developed recently.
机译:结合了微光学和微流体组件的光流体设备为传统的微流体设备带来了许多新的优势。诸如光束整形之类的方面可以集成在芯片上,并提供高灵敏度和内置的光学对准。光电流体微流式细胞仪已在以下应用中得到证明,例如即时诊断,细胞免疫表型,稀有细胞分析,基因组学和分析化学。流量控制,光导和收集,数据收集和数据分析是归因于光流微流式细胞仪性能的四种主要技术。对这四个领域的每个领域都进行了详细讨论,以显示基本原理和最新发展。讨论了将3D微加工技术用于制造这些新颖的微流控设备的过程,整个系统的集成利用了每个子系统的小型化优势。这些不同技术的结合刺激了微流式细胞仪的发展,结果显示了最近开发的多种类型的微流式细胞仪的性能。

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