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Heterogeneous Integration of a LASER Induced Fluorescence Detection Device for Point-of-Care Microfluidic Biochemical Analysis

机译:激光诱导荧光检测装置的异质整合,进行护理点微流体生物化学分析

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Fluorescence detection is more advantageous than electrochemical detection in terms of high sensitivity, multiplexed detection capability and isolation from analyte. Integration of fluorescence detection, however, is much more difficult. First, it would require heterogeneous integration of various optical components including an excitation source, an optical filter, a lens, a mirror and a detector. Second, most of integrated fluorescence detectors, even though not fully integrated, suffer from high limit of detection (LOD) compared to conventional optical system that consists of discrete optical components. We have reduced laser light scattering in an integrated hydrogenated amorphous Si (a-Si:H) fluorescence detector, significantly improving a limit-of-detection (LOD). The detection platform comprises a microlens and the annular fluorescence detector where a thick SiO_2/Ta_2O_5 multilayer optical interference filter is monolithically integrated on an a-Si:H pin photodiode. With a microfluidic capillary electrophoresis (CE) device mounted on the platform, the integrated system is demonstrated to separate DNA restriction fragment digests with high speed, high sensitivity and high separation efficiency, implying single molecular DNA detection when combined with polymerase chain reaction (PCR). We are now working towards integration of an excitation source to fabricate heterogeneously integrated laser-induced fluorescence detection (LIF) device that would be comprised of an InGaN laser diode, microlenses and the integrated a-Si:H fluorescence detector.
机译:荧光检测比在高灵敏度,多路复用检测能力和分析物中分离方面的电化学检测更有利。然而,荧光检测的整合更加困难。首先,需要包括激励源,滤光器,透镜,镜子和检测器的各种光学组件的异构整合。其次,与传统的光学系统相比,大多数集成荧光探测器,即使没有完全集成,也遭受了由离散光学组件组成的传统光学系统的检测高限度(LOD)。我们在一体化氢化的无晶硅Si(A-Si:H)荧光检测器中减少了激光光散射,显着改善了检测限(LOD)。检测平台包括微透镜和环形荧光检测器,其中厚的SiO_2 / TA_2O_5多层光学干涉滤光器在A-Si:H PIN光电二极管上单整体集成。通过安装在平台上的微流体毛细管电泳(CE)装置,对集成系统进行了说明以高速,高灵敏度和高分离效率分离DNA限制性片段消化,暗示当与聚合酶链反应(PCR)结合时单分子DNA检测。我们现在正在努力整合激发源来制造非均匀集成的激光诱导的荧光检测(LIF)装置,该装置将由InGaN激光二极管,微透镜和集成A-Si:H荧光检测器组成。

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