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All-fiber Optofluidic Biosensor

机译:全光纤光生物传感器

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摘要

Optical fiber provides a unique and versatile platform for developing point-of-care optical sensing systems. Here we first propose a Fabry-Perot (FP) based flow-through optofluidic biosensor, and then construct an all-fiber system which fully utilizes optical fibers to achieve rapid, sensitive, label-free biomolecular detection. This sensor consists of two single mode fibers (SMFs) with reflecting surfaces and a photonic crystal fiber (PCF) vertically sandwiched by them. Firstly, the SMFs act as waveguides for delivering light into and out of an optofluidic device (like PCF); secondly, instead of using the optical properties of the PCF, we take advantage of its inherent multiple fluidic channels and large sensing surface; thirdly, the two reflective surfaces and the PCF form a Fabry-Perot microresonator and its resonance mode is sensitive to the change in the fluidic channels, which can be used to detect the substances flowing through the fluidic channels or adsorbing on the channel surface. In this paper, we explore the operating principle of the FP-based optofluidic biosensor, theoretically and experimentally investigate its feasibility and capability. The results show that the all-fiber optofluidic sensor is a promising technology platform for rapid, sensitive and high-throughput biological and chemical sensing.
机译:光纤为开发即时医疗光学传感系统提供了独特而通用的平台。在这里,我们首先提出一种基于Fabry-Perot(FP)的流通型光电生物传感器,然后构建一种全光纤系统,该系统充分利用光纤来实现快速,灵敏,无标记的生物分子检测。该传感器由两条具有反射面的单模光纤(SMF)和垂直夹在其中的光子晶体光纤(PCF)组成。首先,SMF充当波导,用于将光传输到光流体设备(例如PCF)中或从中输出。其次,我们没有利用PCF的光学特性,而是利用了PCF固有的多个流体通道和较大的感应表面。第三,两个反射面和PCF形成Fabry-Perot微谐振器,其谐振模式对流体通道的变化敏感,可用于检测流过流体通道或吸附在通道表面上的物质。在本文中,我们探索了基于FP的光流生物传感器的工作原理,在理论上和实验上研究了其可行性和能力。结果表明,全光纤光电传感器是用于快速,灵敏和高通量生物化学传感的有前途的技术平台。

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