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Three dimensional microfluidics with embedded microball lenses for parallel and high throughput multicolor fluorescence detection

机译:具有嵌入式微球透镜的三维微流控技术用于平行和高通量多色荧光检测

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摘要

We report a 3D microfluidic device with 32 detection channels and 64 sheath flow channels and embedded microball lens array for high throughput multicolor fluorescence detection. A throughput of 358 400 cells/s has been accomplished. This device is realized by utilizing solid immersion micro ball lens arrays for high sensitivity and parallel fluorescence detection. High refractive index micro ball lenses (n = 2.1) are embedded underneath PDMS channels close to cell detection zones in channels. This design permits patterning high N.A. micro ball lenses in a compact fashion for parallel fluorescence detection on a small footprint device. This device also utilizes 3D microfluidic fabrication to address fluid routing issues in two-dimensional parallel sheath focusing and allows simultaneous pumping of 32 sample channels and 64 sheath flow channels with only two inlets.
机译:我们报告了具有32个检测通道和64个鞘流通道以及嵌入式微球透镜阵列的3D微流体设备,用于高通量多色荧光检测。吞吐量达到358×400个单元/秒。该设备是通过将固态浸入式微球透镜阵列用于高灵敏度和平行荧光检测而实现的。高折射率微球透镜(n = 2.1)埋在PDMS通道下方,靠近通道中的细胞检测区域。这种设计允许以紧凑的方式对高N.A.微球透镜进行构图,以在小尺寸的设备上进行平行荧光检测。该设备还利用3D微流体制造技术来解决二维平行鞘管聚焦中的流体布线问题,并允许仅通过两个入口同时泵送32个样品通道和64个鞘管流动通道。

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