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Optical fiber extrinsic Fabry-Perot interferometric (EFPI)-based biosensors

机译:光纤外在法布里 - 珀罗干干涉测量(EFPI)被基于生物传感器

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A novel system incorporating optical fiber extrinsic Fabry-Perot interferometric (EFPI)-based sensors for rapid detection of biological targets is presented. With the appropriate configuration, the EFPI senor is able to measure key environmental parameters by monitoring the interferometric fringes resulting from an optical path differences of reflected signals. The optical fiber EFPI sensor has been demonstrated for strain, pressure, and temperature measurements and can be readily modified for refractive index measurements by allowing solutions to flow into an open cavity. The sensor allows for highly sensitive, real-time, refractive index measurements and by applying affinity coatings containing ligands within this cavity, specific binding of target molecules can be accomplished. As target molecules bind to the coating, there is an increased density within the film, causing a measurable refractive index change that correlates to the concentration of detected target molecules. This sensor platform offers enhanced sensing capabilities for clinical diagnostics, pharmaceutical screening, environmental monitoring, food pathogen detection, biological warfare agent detection, and industrial bioprocessing. Promising applications also exist for process monitoring within the food/beverage, petroleum, and chemical industry.
机译:提出了一种新颖的系统,包括用于快速检测生物靶标的光纤外在法布里 - 珀罗干干涉测量(EFPI)的基于生物靶标的传感器。利用适当的配置,EFPI Senor能够通过监视由反射信号的光路差产生的干涉管序列来测量关键环境参数。已经证明了光纤EFPI传感器用于应变,压力和温度测量,并且可以通过允许溶液流入开口腔来容易地修改折射率测量。传感器允许高敏感,实时,折射率测量,并通过在该腔内施加含有配体的亲和涂层,可以实现靶分子的特异性结合。当靶分子与涂层结合时,膜内的密度增加,导致可测量的折射率变化与检测到的靶分子的浓度相关。该传感器平台为临床诊断,药物筛选,环境监测,食品病原体检测,生物战争检测和工业生物处理提供增强的传感能力。在食品/饮料,石油和化学工业内的过程监测也存在有前途的应用。

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