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用于集成荧光传感器的光学滤波技术。

Optical filtering technologies for integrated fluorescence sensors.

作者信息

Dandin Marc, Abshire Pamela, Smela Elisabeth

机构信息

Department of Electrical Engineering and Institute for Systems Research, University of Maryland, College Park, MD 20742, USA.

出版信息

Lab Chip. 2007 Aug;7(8):955-77. doi: 10.1039/b704008c. Epub 2007 Jul 10.

Abstract

Numerous approaches have been taken to miniaturizing fluorescence sensing, which is a key capability for micro-total-analysis systems. This critical, comprehensive review focuses on the optical hardware required to attenuate excitation light while transmitting fluorescence. It summarizes, evaluates, and compares the various technologies, including filtering approaches such as interference filters and absorption filters and filterless approaches such as multicolor sensors and light-guiding elements. It presents the physical principles behind the different architectures, the state-of-the-art micro-fluorometers and how they were microfabricated, and their performance metrics. Promising technologies that have not yet been integrated are also described. This information will permit the identification of methods that meet particular design requirements, from both performance and integration perspectives, and the recognition of the remaining technological challenges. Finally, a set of performance metrics are proposed for evaluating and reporting spectral discrimination characteristics of integrated devices in order to promote side-by-side comparisons among diverse technologies and, ultimately, to facilitate optimized designs of micro-fluorometers for specific applications.

摘要

为实现荧光传感的小型化,人们已采取了多种方法,而荧光传感是微全分析系统的一项关键功能。这篇重要的综述聚焦于在传输荧光的同时衰减激发光所需的光学硬件。它总结、评估并比较了各种技术,包括干涉滤光片和吸收滤光片等滤波方法以及多色传感器和导光元件等无滤光片方法。它介绍了不同架构背后的物理原理、当前的微型荧光计及其微制造方式,以及它们的性能指标。还描述了尚未集成的有前景的技术。这些信息将有助于从性能和集成角度识别满足特定设计要求的方法,并认识到剩余的技术挑战。最后,提出了一组性能指标,用于评估和报告集成设备的光谱鉴别特性,以促进不同技术之间的并排比较,并最终便于针对特定应用优化微型荧光计的设计。

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