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Time-Resolved fluorescence measurement system for real-time high-throughput microfluidic droplet sorting

机译:时间分辨荧光测量系统,用于实时高通量微流控微滴分类

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This work presents a Fluorescence Life-Time (FLT) measurement system for real-time microfluidic droplet sorting in high throughput conditions. This system is implemented using a low cost System-on-Chip (SoC) Field-Programmable Gate Array (FPGA) platform, that combines a Cyclone V FPGA with a dual-core ARM Cortex-a9 Hard Processor System (HPS). A time-correlated single photon counting system is implemented in the FPGA part and the data are transferred to the SDRAM of the HPS part to be processed by a developed bare-metal C program to extract the FLT of each droplet passing through the detection spot. According to the droplet's measured FLT, an action could be taken to sort this droplet. The system automatically detects the droplets and extracts their FLT values at different simulated droplet flow rates; from a few droplets up to 1 thousand droplets per second. Thanks to the use of a maximum Likelihood-based algorithm, the standard deviation of the measured FLTs of simulated droplets of the same material is only 30% above the theoretical quantum photon shot noise limit.
机译:这项工作提出了一种荧光寿命(FLT)测量系统,用于在高通量条件下进行实时微流体液滴分选。该系统使用低成本的片上系统(SoC)现场可编程门阵列(FPGA)平台实现,该平台将Cyclone V FPGA与双核ARM Cortex-a9硬核处理器系统(HPS)相结合。在FPGA部分中实现了与时间相关的单光子计数系统,并将数据传输到HPS部分的SDRAM,以通过开发的裸机C程序进行处理,以提取通过检测点的每个液滴的FLT。根据液滴的测得的FLT,可以采取措施对液滴进行分选。系统会自动检测液滴,并在不同的模拟液滴流速下提取其FLT值;从几滴到每秒一千滴。由于使用了基于最大似然的算法,同一材料的模拟液滴的实测FLT的标准偏差仅比理论量子光子散粒噪声极限高30%。

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