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A microfluidic system for full hydrodynamic focusing control

机译:一种用于全水动力聚焦控制的微流体系统

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In this contribution we present an automated microfluidic system that allows the full control of a hydrodynamically focused sample stream, both in position and width. The basis of the system is a microfluidic chip for hydrodynamic focusing. A dyed sample is optically detected by a CMOS camera mounted on a microscope. The optical setup yields a resolution of 0.5 μm/pixel. By performing colour intensity analysis on acquired frames, the sample stream position and width are derived. With these parameters, the flowrates of programmable volume driven syringe pumps are actuated. The microfluidic system has been designed, validated, and successfully tested in time domain. Furthermore, the system design approach can be easily adapted for different microfluidic geometries.
机译:在这一贡献中,我们介绍了一种自动化的微流体系统,其允许完全控制具有位置和宽度的流体动力学聚焦的样品流。 该系统的基础是用于流体动力学聚焦的微流体芯片。 通过安装在显微镜上的CMOS相机光学检测染色样品。 光学设置产生0.5μm/像素的分辨率。 通过对所获取的帧进行颜色强度分析,导出样本流位置和宽度。 利用这些参数,可编程体积驱动的注射泵的流量被致动。 微流体系统已经设计,验证,并在时域中成功进行了测试。 此外,系统设计方法可以容易地适应不同的微流体几何形状。

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