首页> 外文会议>Conference on Microfluidics, BioMEMS, and Medical Microsystems, Jan 27-29, 2003, San Jose, California, USA >Single-cell manipulation and fluorescence detection in bench top flow cytometry system with disposable plastic microfluidic chip
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Single-cell manipulation and fluorescence detection in bench top flow cytometry system with disposable plastic microfluidic chip

机译:带有一次性塑料微流控芯片的台式流式细胞仪系统中的单细胞操作和荧光检测

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摘要

Flow cytometry and microfluidic system are versatile tools to study the functional genomics at the single-cell level in the postgenomic era. We have developed a microfluidics-based benchtop flow cytometry system incorporating a disposable plastic microchip and low-power diode lasers. The plastic microfluidic chip is designed and fabricated using soft lithography which enables the development of inexpensive and flexible miniaturized fluidic devices. The microchip contains the hydrodyamic focusing chamber where the sample and sheath fluids are driven by a pressure difference. The performance of the combined fluidics and optics is studied systematically to evaluate the detection accuracy and efficiency of our flow cytometry system. The interactions of the biological particles with surrounding squeezed flow and focused laser beam are investigated to optimize the design of the microchannel network as well as the optical characteristics of the instrument for efficient single-cell manipulation and detection.
机译:流式细胞仪和微流控系统是研究后基因组时代单细胞水平的功能基因组学的多功能工具。我们已经开发了一种基于微流体的台式流式细胞仪系统,该系统结合了一次性塑料微芯片和低功率二极管激光器。塑料微流体芯片是使用软光刻技术设计和制造的,这使得能够开发廉价,灵活的小型化流体装置。微芯片包含水动力聚焦室,样品和鞘液通过压力差驱动。系统地研究了流体和光学相结合的性能,以评估我们流式细胞仪系统的检测准确性和效率。研究了生物颗粒与周围压缩流和聚焦激光束之间的相互作用,以优化微通道网络的设计以及用于有效单细胞操作和检测的仪器的光学特性。

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