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    • 8. 发明授权
    • Microfluidic apparatus with integrated porous-substrate/sensor for real-time (bio)chemical molecule detection
    • 具有用于实时(生物)化学分子检测的集成多孔底物/传感器的微流体装置
    • US06806543B2
    • 2004-10-19
    • US10243089
    • 2002-09-12
    • Mineo YamakawaJohn HeckSelena ChanNarayan Sundararajan
    • Mineo YamakawaJohn HeckSelena ChanNarayan Sundararajan
    • H01L2714
    • B01L3/502715B01J2219/00639B01L3/50255B01L3/502753B01L2300/0636B01L2300/0681B01L2300/0887B81B2201/0214Y10T137/2224
    • Microfluidic apparatus including integrated porous substrate/sensors that may be used for detecting targeted biological and chemical molecules and compounds. In one aspect, upper and lower microfluidic channels are defined in respective halves of a substrate, which are sandwiched around a porous membrane upon assembly. In another aspect, the upper and lower channels are formed such that a portion of the lower channel passes beneath a portion of the upper channel to form a cross-channel area, wherein the membrane is disposed between the two channels. In various embodiments, one or more porous membranes are disposed proximate to corresponding cross-channel areas defined by one or more upper and lower channels. The porous membrane may also have sensing characteristics, such that it produces a change in an optical and/or electronic characteristic. Accordingly, the apparatus may further include instrumentation or detection equipment to measure the changes, such as optic-based detectors and electronic instrumentation.
    • 微流体设备包括可用于检测目标生物和化学分子和化合物的综合多孔底物/传感器。 在一个方面,上和下微流体通道限定在基底的相应的两半中,其在组装时夹在多孔膜周围。 在另一方面,上通道和下通道形成为使得下通道的一部分在上通道的一部分下方通过以形成交叉通道区域,其中膜设置在两个通道之间。 在各种实施例中,一个或多个多孔膜设置在由一个或多个上部和下部通道限定的相应交叉通道区域附近。 多孔膜也可以具有感测特性,使得其产生光学和/或电子特性的变化。 因此,该装置还可以包括用于测量变化的仪器或检测设备,例如基于光学的检测器和电子仪器。
    • 9. 发明授权
    • Microfluidic apparatus with integrated porous-substrate/sensor for real-time (bio)chemical molecule detection
    • 具有用于实时(生物)化学分子检测的集成多孔底物/传感器的微流体装置
    • US08153079B2
    • 2012-04-10
    • US10856372
    • 2004-05-27
    • Mineo YamakawaJohn HeckSelena ChanNarayan Sundararajan
    • Mineo YamakawaJohn HeckSelena ChanNarayan Sundararajan
    • B01L3/00
    • B01L3/502715B01J2219/00639B01L3/50255B01L3/502753B01L2300/0636B01L2300/0681B01L2300/0887B81B2201/0214Y10T137/2224
    • Microfluidic apparatus including integrated porous substrate/sensors that may be used for detecting targeted biological and chemical molecules and compounds. In one aspect, upper and lower microfluidic channels are defined in respective halves of a substrate, which are sandwiched around a porous membrane upon assembly. In other aspect, the upper and lower channels are formed such that a portion of the lower channel passes beneath a portion of the upper channel to form a cross-channel area, wherein the membrane is disposed between the two channels. In various embodiments, one or more porous membranes are disposed proximate to corresponding cross-channel areas defined by one or more upper and lower channels. The porous membrane may also have sensing characteristics, such that it produces a change in an optical and/or electronic characteristic. Accordingly, the apparatus may further include instrumentation or detection equipment to measure the changes, such as optic-based detectors and electronic instrumentation.
    • 微流体设备包括可用于检测目标生物和化学分子和化合物的综合多孔底物/传感器。 在一个方面,上和下微流体通道限定在基底的相应的两半中,其在组装时夹在多孔膜周围。 在另一方面,上通道和下通道形成为使得下通道的一部分穿过上通道的一部分以形成交叉通道区域,其中隔膜设置在两个通道之间。 在各种实施例中,一个或多个多孔膜设置在由一个或多个上部和下部通道限定的相应交叉通道区域附近。 多孔膜也可以具有感测特性,使得其产生光学和/或电子特性的变化。 因此,该装置还可以包括用于测量变化的仪器或检测设备,例如基于光学的检测器和电子仪器。