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Microchip-based flow cytometry for Effective Detection and Count

机译:基于微芯片的流式细胞仪可有效检测和计数

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High-throughput detection and identification of foodborne pathogens are in increasing demand for rapid bacteria detections in food safety and quality monitoring. As an effective method, microchip-based flow cytometry (microcytometery) has a potential to be less expensive and high throughout, and requires less bulky instrumentation than conventional methods. In this work, a low-cost and robust microcytometer with a simple optical setup was developed for demonstrating the high-throughput identification of foodborne bacterial pathogens that integrate sample flow focusing and detection into one testing procedure. High performance identification capability was achieved through simultaneously detecting the fluorescence and scatter light emitted from micro-fabricated channel, after designing and optimizing the laser shaping optical system and the micro-channel structure to improve the excitation light intensity as well as the detection sensitivity. In our configuration, the simple testing configuration with the collection angle of 42° in the orthogonal plane to micro chip presents the best SNR for both signals through simulation and systematic measurements. As a result, the maximum throughput of 83particles/s for the fluorescence-labelled bead with diameter of 1.013μm was obtained as well as the high detection efficiency (above 99%) and the correlation percentage (above 99.5%). Apart from the high detection sensitivity and identification power, this microcytometer also has the advantages of simple optical structure, compactness and ease in building.
机译:食源性病原体的高通量检测和鉴定对食品安全和质量监控中快速细菌检测的需求不断增长。作为一种有效的方法,基于微芯片的流式细胞术(微细胞计数法)有可能变得更便宜,整体成本更高,并且比传统方法需要的仪器体积更少。在这项工作中,开发了一种具有简单光学设置的低成本,坚固耐用的微细胞计数仪,用于证明对食源性细菌病原体的高通量鉴定,将样品流聚焦和检测整合到一个测试过程中。通过对激光加工光学系统和微通道结构进行设计和优化,以提高激发光强度和检测灵敏度,通过同时检测微加工通道发出的荧光和散射光,实现了高性能的识别能力。在我们的配置中,通过与模拟芯片正交的平面中的42°收集角的简单测试配置可通过仿真和系统测量为信号提供最佳的SNR。结果,对于直径为1.013μm的荧光标记的珠,获得了最大83个颗粒/秒的通量,以及高的检测效率(超过99%)和相关百分比(超过99.5%)。除了具有高的检测灵敏度和识别能力外,这种微细胞计数仪还具有光学结构简单,紧凑且易于建造的优点。

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