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Cells characterization in microfluidic flows by small angle light scattering and 3D holographic technique

机译:小角光散射和3D全息技术微流体流动的细胞表征

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The Light Scattering Profile (LSP) of an individual cell provides a fast and accurate characterization of its morphological properties. By combining a camera-based small angle light scattering apparatus with a microfluidic-induced particle migration technique, it is possible to characterize cells in microfluidic flows. The scattering profile of an individual cell can be fully characterized by our optimized optical light collection system. Viscoelastic-induced particle migration by polyethylene oxide implemented in a low-cost microfluidic device composed of an alignment section and a measuring section opens the possibility of precise, label-free, individual cell analysis. We have studied living cells in microfluidic flows by our light scattering apparatus and by a Digital Holographic Microscope (DHM) system. Our DHM measurements provided an accurate 3D position tracking even in multiple cell conditions.
机译:单个细胞的光散射轮廓(LSP)提供了其形态学性质的快速和准确表征。通过将基于相机的小角度光散射装置与微流体诱导的颗粒迁移技术组合,可以表征微流体流动中的细胞。各个电池的散射轮廓可以通过我们优化的光学光收集系统完全表征。在由对准部分和测量部分组成的低成本微流体装置中实施的聚环氧乙烷的粘弹性诱导的颗粒迁移打开精确,无标记,单个细胞分析的可能性。我们已经通过光散射装置和数字全息显微镜(DHM)系统研究了微流体流动中的活细胞。我们的DHM测量提供了即使在多个细胞条件下也提供了精确的3D位置跟踪。

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