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MULTIPLEX FLUORESCENT PARTICLE DETECTION USING SPATIALLY DISTRIBUTED EXCITATION

机译:基于空间分布激发的多重荧光颗粒物检测

摘要

A chip-scale optical approach to performing multi-target detection is based on molecular biosensing using fiber-optic based fluorescence or light scattering detection in liquid-core waveguides. Multiplexing methods are capable of registering individual nucleic acids and other optically responsive particles, and are ideal for amplification-free detection in combination with the single molecule sensitivity of optofluidic chips. This approach overcomes a critical barrier to introducing a new integrated technology for amplification-free molecular diagnostic detection. Specific examples of liquid-core optical waveguides and multi-mode interferometers are described; however, they can be implemented in a number of different ways as long as a series of excitation spots is created whose spacing varies with the excitation wavelength.
机译:进行多目标检测的芯片级光学方法基于分子生物传感,该分子生物传感使用液芯波导中基于光纤的荧光或光散射检测。复用方法能够配准单个核酸和其他光学响应粒子,并且是结合光流体芯片的单分子敏感性的无扩增检测的理想选择。该方法克服了引入新的无扩增分子诊断检测集成技术的关键障碍。描述了液芯光波导和多模干涉仪的具体例子;然而,只要产生一系列激发点,它们的间隔随激发波长而变化,就可以用许多不同的方式来实现它们。

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