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流式细胞术及相关技术中的微流控技术

Microfluidics in flow cytometry and related techniques.

作者信息

Béné M C

机构信息

Hematology Biology, University Hospital, Nantes, France.

出版信息

Int J Lab Hematol. 2017 May;39 Suppl 1:93-97. doi: 10.1111/ijlh.12669.

Abstract

Technological advances in laboratory automation are now well understood and applied as they considerably improved the speed and robustness of haematological laboratory data, in the companion fields of blood analyzers and flow cytometry. Still rather confidential is the field of microfluidics, mostly confined so far to academic settings and research laboratories. The literature in the field of microfluidics is growing and applications in hematology range from cell counting to flow cytometry, cell sorting, or ex vivo testing. A literature search allows to identify many innovative solutions developed to master the specific physics of fluid movements in microchips. Miniaturization also dwells on findings that have emerged from different areas such as electronics and nanoengineering. This review proposes an overview of the major principles guiding developments in microfluidics and describes a necessarily limited and nonexhaustive series of specific applications. Readers are strongly encouraged to consult the documents referred to in the references section to learn more about this world knocking at our door and possibly liable to revolutionize our profession of hematology biologists in a not so far future.

摘要

实验室自动化技术的进步如今已得到充分理解和应用,因为它们极大地提高了血液学实验室数据在血液分析仪和流式细胞术等相关领域的速度和稳健性。微流控领域仍相当保密,目前大多局限于学术环境和研究实验室。微流控领域的文献不断增加,其在血液学中的应用范围从细胞计数到流式细胞术、细胞分选或体外测试。文献检索有助于识别为掌握微芯片中流体运动的特定物理原理而开发的许多创新解决方案。小型化还依赖于电子学和纳米工程等不同领域出现的研究成果。本综述概述了指导微流控发展的主要原理,并描述了一系列必然有限且不详尽的具体应用。强烈鼓励读者查阅参考文献部分引用的文献,以了解更多关于这个正在叩响我们大门、可能在不久的将来彻底改变我们血液学专业的世界的信息。

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