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An integrated multiparametric flow cytometry chip using microfluidic drifting based three-dimensional hydrodynamic focusing

机译:集成的多参数流式细胞仪芯片使用基于微流体漂移的三维流体动力学聚焦

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摘要

In this work, we demonstrate an integrated, single-layer, miniature flow cytometry device that is capable of multi-parametric particle analysis. The device integrates both particle focusing and detection components on-chip, including a “microfluidic drifting” based three-dimensional (3D) hydrodynamic focusing component and a series of optical fibers integrated into the microfluidic architecture to facilitate on-chip detection. With this design, multiple optical signals (i.e., forward scatter, side scatter, and fluorescence) from individual particles can be simultaneously detected. Experimental results indicate that the performance of our flow cytometry chip is comparable to its bulky, expensive desktop counterpart. The integration of on-chip 3D particle focusing with on-chip multi-parametric optical detection in a single-layer, mass-producible microfluidic device presents a major step towards low-cost flow cytometry chips for point-of-care clinical diagnostics.
机译:在这项工作中,我们演示了一种集成的单层微型流式细胞仪,能够进行多参数颗粒分析。该设备在芯片上集成了粒子聚焦和检测组件,包括基于“微流体漂移”的三维(3D)流体动力聚焦组件和一系列集成到微流体体系结构中的光纤,以促进芯片上检测。通过这种设计,可以同时检测来自单个颗粒的多个光信号(即,前向散射,侧向散射和荧光)。实验结果表明,我们的流式细胞仪芯片的性能可与笨重,昂贵的台式机媲美。将单芯片,可批量生产的微流控设备中的单芯片3D粒子聚焦与单芯片多参数光学检测相集成,为面向即时临床诊断的低成本流式细胞仪芯片迈出了重要一步。

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