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Miniaturization of fluorescence sensing in optofluidic devices

机译:晶体装置中荧光传感的小型化

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摘要

Successful development of a micro-total-analysis system (μTAS, lab-on-a-chip) is strictly related to the degree of miniaturization, integration, autonomy, sensitivity, selectivity, and repeatability of its detector. Fluorescence sensing is an optical detection method used for a large variety of biological and chemical assays, and its full integration within lab-on-a-chip devices remains a challenge. Important achievements were reported during the last few years, including improvements of previously reported methodologies, as well as new integration strategies. However, a universal paradigm remains elusive. This review considers achievements in the field of fluorescence sensing miniaturization, starting from off-chip approaches, representing miniaturized versions of their lab counter-parts, continuing gradually with strategies that aim to fully integrate fluorescence detection on-chip, and reporting the results around integration strategies based on optical-fiber-based designs, optical layer integrated designs, CMOS-based fluorescence sensing, and organic electronics. Further successful development in this field would enable the implementation of sensing networks in specific environments that, when coupled to Internet-of-Things (IoT) and artificial intelligence (AI), could provide real-time data collection and, therefore, revolutionize fields like health, environmental, and industrial sensing.
机译:成功开发微量分析系统(μTAS,实验室内芯片)严格与其探测器的小型化,集成,自主性,灵敏度,选择性和可重复性有关。荧光感测是一种用于大量生物和化学品系的光学检测方法,其在芯片装置内的完全集成仍然是一个挑战。在过去几年中报告了重要成就,包括先前报告的方法以及新的一体化策略的改进。但是,普遍的范式仍然难以捉摸。该审查考虑了荧光传感小型化领域的成就,从片外方法开始,代表其实验室计数器的小型化版本,逐步逐步逐步逐步整合芯片探测,并报告整合围绕结果基于光纤的设计,光学层集成设计,基于CMOS的荧光传感和有机电子的策略。该领域的进一步成功开发将使在特定环境中实现传感网络,当耦合到互联网(物联网)和人工智能(AI)时,可以提供实时数据收集,因此彻底改变田地健康,环境和工业传感。

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  • 来源
    《Microfluidics and nanofluidics》 |2020年第9期|65.1-65.28|共28页
  • 作者单位

    Institute of Microstructure Technology Karlsruhe Institute of Technology Campus Nord Hermann-von-Helmholtz-Platz 1 Eggenstein-Leopoldshafen Germany Institut Clement Ader (ICA) CNRS INSA ISAE-SUPAERO Mines-Albi UPS Universit6 de Toulouse Toulouse France;

    Institut Clement Ader (ICA) CNRS INSA ISAE-SUPAERO Mines-Albi UPS Universit6 de Toulouse Toulouse France;

    Institut Clement Ader (ICA) CNRS INSA ISAE-SUPAERO Mines-Albi UPS Universit6 de Toulouse Toulouse France;

    Group of Atmospheric Physical Chemistry Institute of Chemistry and Processes for Energy Environment and Health (ICPEES) University of Strasbourg Strasbourg France In'Air Solutions 25 rue Becquerel Strasbourg France;

    Institute of Microstructure Technology Karlsruhe Institute of Technology Campus Nord Hermann-von-Helmholtz-Platz 1 Eggenstein-Leopoldshafen Germany;

    Institut Clement Ader (ICA) CNRS INSA ISAE-SUPAERO Mines-Albi UPS Universit6 de Toulouse Toulouse France;

    Institute of Microstructure Technology Karlsruhe Institute of Technology Campus Nord Hermann-von-Helmholtz-Platz 1 Eggenstein-Leopoldshafen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lab-on-a-chip; Off/on-chip integration strategy; Lab-on-a-CMOS; Microfluidic-PCB; In-plane optics; Organic electronics; Fluorescence detection;

    机译:实验室芯片;关闭/片上整合策略;实验室内 - CMOS;微流体 - PCB;面内光学;有机电子;荧光检测;

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