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Microfluidic Photonic Integrated Circuits

机译:微流体光子集成电路

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We report on the development of an inexpensive, portable lab-on-a-chip flow cytometer system in which microfluidics, photonics, and acoustics are integrated together to work synergistically. The system relies on fluid-filled two-dimensional on-chip photonic components such as lenses, apertures, and slab waveguides to allow for illumination laser beam shaping, light scattering and fluorescence signal detection. Both scattered and fluorescent lights are detected by photodetectors after being collected and guided by the on-chip optics components (e.g. lenses and waveguides). The detected light signal is imported and amplified in real time and triggers the piezoelectric actuator so that the targeted samples are directed into desired reservoir for subsequent advanced analysis. The real-time, closed-loop control system is developed with field-programmable-gate-array (FPGA) implementation. The system enables high-throughput (1-10kHz operation), high reliability and low-powered (<1mW) fluorescence activated cell sorting (FACS) on a chip. The microfabricated flow cytometer can potentially be used as a portable, inexpensive point-of-care device in resource poor environments.
机译:我们报告了一种廉价的便携式芯片实验室流式细胞仪系统的开发情况,该系统将微流体,光子学和声学整合在一起,可以协同工作。该系统依赖于充满流体的二维芯片上光子组件,例如透镜,光圈和平板波导,以实现照明激光束整形,光散射和荧光信号检测。散射光和荧光都在被芯片上的光学组件(例如透镜和波导)收集并引导后被光电探测器检测到。检测到的光信号被实时导入并放大,并触发压电致动器,从而将目标样品导入所需的储液罐中,以进行后续的高级分析。实时,闭环控制系统是通过现场可编程门阵列(FPGA)实现开发的。该系统可在芯片上实现高通量(1-10kHz操作),高可靠性和低功耗(<1mW)荧光激活细胞分选(FACS)。微型流式细胞仪可以在资源匮乏的环境中用作便携式,廉价的即时护理设备。

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