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Optofluidic ultrahigh-throughput detection of fluorescent drops

机译:荧光滴的光流超高通量检测

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摘要

This paper describes an optofluidic droplet interrogation device capable of counting fluorescent drops at a throughput of 254000 drops per second. To our knowledge, this rate is the highest interrogation rate published thus far. Our device consists of 16 parallel microfluidic channels bonded directly to a filter-coated two-dimensional Complementary Metal-Oxide-Semiconductor (CMOS) sensor array. Fluorescence signals emitted from the drops are collected by the sensor that forms the bottom of the channel. The proximity of the drops to the sensor facilitates efficient collection of fluorescence emission from the drops, and overcomes the trade-off between light collection efficiency and field of view in conventional microscopy. The interrogation rate of our device is currently limited by the acquisition speed of CMOS sensor, and is expected to increase further as high-speed sensors become increasingly available.
机译:本文介绍了一种能够以每秒254000滴的吞吐量计算荧光滴的光流体滴询问设备。据我们所知,这一比率是迄今为止公布的最高审讯率。我们的设备由16个平行的微流体通道组成,这些通道直接与过滤器涂层的二维互补金属氧化物半导体(CMOS)传感器阵列相连。从液滴发出的荧光信号被形成通道底部的传感器收集。墨滴与传感器的接近性促进了从墨滴的荧光发射的有效收集,并克服了常规显微镜中光收集效率和视野之间的权衡。目前,我们设备的询问速率受到CMOS传感器的采集速度的限制,并且随着高速传感器的日益普及,预计该速率还会进一步提高。

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