BIOMARKER SENSING BASED ON NANOFLUIDIC AMPLIFICATION AND RESONANT OPTICAL DETECTION
    1.
    发明申请
    BIOMARKER SENSING BASED ON NANOFLUIDIC AMPLIFICATION AND RESONANT OPTICAL DETECTION 有权
    基于纳米荧光放大和共振光学检测的生物标记感知

    公开(公告)号:US20150024507A1

    公开(公告)日:2015-01-22

    申请号:US14380350

    申请日:2013-03-15

    Applicant: STC. UNM

    Abstract: Provided is a sensor platform that includes a substrate, a plurality of nanochannels disposed on the substrate, and a plurality of electrodes, a waveguide disposed on the substrate and an analysis chamber and a reference chamber disposed on the substrate. Each electrode extends substantially across a width of the plurality of nanochannels. At least one analysis optical resonator is disposed in the analysis chamber and is optically coupled to at least a portion of the waveguide. The at least one analysis optical resonator is in fluid communication with at least one of the plurality of nanochannels. At least one reference optical resonator is disposed in the reference chamber and is optically coupled to at least a portion of the waveguide. The at least one reference optical resonator is in fluid communication with at least one other of the plurality of nanochannels.

    Abstract translation: 提供了一种传感器平台,其包括基板,设置在基板上的多个纳米通道,以及多个电极,设置在基板上的波导管和设置在基板上的分析室和基准室。 每个电极基本上跨越多个纳米通道的宽度延伸。 至少一个分析光学谐振器设置在分析室中并且光耦合到波导的至少一部分。 所述至少一个分析光学谐振器与所述多个纳米通道中的至少一个流体连通。 至少一个参考光学谐振器设置在参考室中并且光耦合到波导的至少一部分。 所述至少一个参考光学谐振器与所述多个纳米通道中的至少另一个流体连通。

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