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Microchip Flow Cytometer with Integrated Polymer Optical Elements for Measurement of Scattered Light

机译:microchip流式细胞仪,集成聚合物光学元件,用于测量散射光

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摘要

Flow cytometry is a very powerful method for biophysical measurement of microparticles, such as cells and bacteria. In this paper, we report an innovative microsystem, in which several different optical elements (waveguides, lenses and fiber-to-waveguide couplers) are integrated with microfluidic channels to form a complete microchip flow cytometer. All the optical elements, the microfluidic system, and the fiber-to-waveguide couplers were defined in one layer of polymer (SU-8, negative photoresist) by standard photolithography. With only one single mask procedure, all the fabrication and packaging processes can be finished in one day. Polystyrene beads were measured in the microchip flow cytometer, and three signals (forward scattering, large angle scattering and extinction) were measured simultaneously for each bead. The average intensities of the forward Scattered light and the incident light extinction showed excellent linear relationship with the sizes of the beads. To our knowledge this is the first time forward scattered light and incident light extinction were measured in a microsystem using integrated optics. The microsystem can be applied for analyzing different kinds of particles and cells, and can easily be integrated with other microfluidic components.
机译:流式细胞仪是一种非常强大的方法,可以对细胞和细菌等微粒进行生物物理测量。在本文中,我们报告了一种创新的微系统,其中将几种不同的光学元件(波导,透镜和光纤至波导耦合器)与微流体通道集成在一起,形成了完整的微芯片流式细胞仪。通过标准光刻法,将所有光学元件,微流体系统和光纤-波导耦合器定义在一层聚合物(SU-8,负性光刻胶)中。仅需一个掩模程序,所有制造和包装过程都可以在一天内完成。在微芯片流式细胞仪中测量聚苯乙烯珠,并同时为每个珠测量三个信号(正向散射,大角度散射和消光)。前向散射光和入射光消光的平均强度与微珠的尺寸表现出极好的线性关系。据我们所知,这是第一次使用集成光学系统在微系统中测量前向散射光和入射光的消光。该微系统可以用于分析不同种类的颗粒和细胞,并且可以轻松地与其他微流体组件集成在一起。

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