首页> 外文会议>2016 IEEE Healthcare Innovation Point-Of-Care Technologies Conference >Low-cost, disposable fluorescence-based biorecognition system architecture for multiplexed point-of-care molecular diagnostics
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Low-cost, disposable fluorescence-based biorecognition system architecture for multiplexed point-of-care molecular diagnostics

机译:低成本,基于一次性荧光的生物识别系统体系结构,用于多重即时护理分子诊断

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The high per patient cost of quantitative, high-sensitivity molecular diagnostics is one of the key roadblocks limiting the transition of this technology from the clinical laboratory to point-of-care diagnostics in low-to-middle income countries (LMICs). As a solution, we present a low-cost system architecture for fluorescence-based point-of-care diagnostics using small volume patient sera samples. Our approach combines an inexpensive 4-site microscope slide reader with low per patient cost consumables using conventional glass microscope slides, pre-printed with biorecognition molecules. We use a neuromorphic-inspired, charge-integrating readout circuit architecture combined with optical filters in a sandwich-style configuration to achieve high-sensitivity while trading off detection time and number of biorecognition sites per slide. Our demonstrated lower limit of detection using Nile Red fluorescent microspheres was a 1,000,000:1 dilution corresponding to approximately 200 microspheres per detection site, approaching the sensitivity of a conventional high-cost desktop clinical laboratory microscope slide reader.
机译:在中低收入国家(LMIC),定量,高灵敏度分子诊断的每位患者高昂的费用是限制该技术从临床实验室向即时医疗诊断过渡的关键障碍之一。作为解决方案,我们提出了一种低成本的系统架构,用于使用少量患者血清样本的基于荧光的即时诊断。我们的方法结合了廉价的4位显微镜载玻片读取器,以及使用预先印有生物识别分子的常规玻璃显微镜载玻片,每位患者的耗材成本低。我们使用神经形态启发式电荷积分读出电路架构,并在三明治式配置中结合光学滤波器,以实现高灵敏度,同时权衡检测时间和每张幻灯片的生物识别位点数量。我们证明的使用尼罗红荧光微球的检测下限为1,000,000:1稀释度,相当于每个检测位点约200个微球,接近传统的昂贵台式临床实验室显微镜载玻片读取器的灵敏度。

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