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

嵌入微球透镜的三维微流体用于并行和高通量多色荧光检测

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作者:Y J Fan, Y C Wu, Y Chen, Y C Kung, T H Wu, K W Huang, H J Sheen, P Y Chiou

Abstract

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.

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