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HIGH-INDEX OPTICAL MATERIALS FOR HIGH-THROUGHPUT LENSFREE IMAGING, COUNTING AND SORTING OF CELLS ON A CHIP

机译:用于高吞吐透镜的高折射率光学材料,芯片上的细胞计数和分类

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We describe a high-throughput lensfree optical imaging system that can characterize numerous cell types found within a heterogeneous mixture. Here, we specifically discuss the effect of the refractive index of the substrate material on the performance of the proposed lensfree optical cell characterization platform. It is experimentally illustrated that the use of high index materials such as SrTiO{sub}3 significantly improves the signal-to-noise ratio of the acquired lensfree images, which is a significant step towards more robust high-throughput cell analysis and characterization. The imaging configuration of the reported high-index material based characterization scheme is massively parallel enabling a cell counting speed of >100,000 cells/sec over a field of view of ~10 cm{sup}2. This novel system can also form the basic building block of a simple and compact point-of-care cell counting technology that can be made as small as a regular cell-phone to rapidly measure the count of e.g., red blood cells or T-lymphocytes from whole blood samples. Such a powerful point-of-care platform may have a significant impact especially for global health related problems in the developing world.
机译:我们描述了一种高通量曝光透过透镜射出光学成像系统,可以表征在异质混合物中发现的许多细胞类型。这里,我们具体地讨论基板材料折射率对所提出的透光光学电池特性平台的性能的影响。实验说明,使用诸如SRTIO {Sub} 3的高指标材料显着提高了所获取的透镜图像的信噪比,这是朝着更强大的高吞吐电池分析和表征的重要步骤。报告的高折射率基于材料的表征方案的成像配置是大规模的平行,使得在〜10cm {sup} 2的视场上,可以在〜10cm {sup} 2的视野上实现> 100,000个单元/秒的小区计数速度。这种新颖的系统还可以形成简单且紧凑的护理点计数技术的基本构建块,可以使得可以像常规手机一样小,以便快速测量例如红细胞或T淋巴细胞的计数来自全血样品。这种强大的护理平台可能对发展中国家的全球健康有关问题产生重大影响。

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