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Cell sorting using efficient light shaping approaches

机译:使用有效的光塑形方法进行细胞分类

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Early detection of diseases can save lives. Hence, there is emphasis in sorting rare disease-indicating cells within small dilute quantities such as in the confines of lab-on-a-chip devices. In our work, we use optical forces to isolate red blood cells detected by machine vision. This approach is gentler, less invasive and more economical compared to conventional FACS systems. As cells are less responsive to plastic or glass beads commonly used in the optical manipulation literature, and since laser safety would be an issue in clinical use, we develop efficient approaches in utilizing lasers and light modulation devices. The Generalized Phase Contrast (GPC) method that can be used for efficiently illuminating spatial light modulators or creating well-defined contiguous optical traps is supplemented by diffractive techniques capable of integrating the available light and creating 2D or 3D beam distributions aimed at the positions of the detected cells. Furthermore, the beam shaping freedom provided by GPC can allow optimizations in the beam's propagation and its interaction with the catapulted cells.
机译:早期发现疾病可以挽救生命。因此,强调在小稀释量内对稀有疾病指示细胞进行分类,例如在芯片上的限制装置中。在我们的工作中,我们使用光学力来分离机器视觉检测到的红细胞。与传统FACS系统相比,这种方法是更温和的,更少的侵入性和更经济。由于电池对光学操纵文献通常用于常用的塑料或玻璃珠,并且由于激光安全将是临床用途的问题,因此我们在利用激光和光调制装置中开发有效的方法。可用于有效地照亮空间光调制器或产生明确定义的连续光学疏水阀的广义相位对比度(GPC)方法通过能够整合可用光并产生瞄准瞄准的2D或3D光束分布的衍射技术来补充衍射技术检测到的细胞。此外,GPC提供的光束整形自由度可以允许光束的传播中的优化及其与弹射细胞的交互。

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