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Optoelectronic tweezers integrated with lensfree holographic microscopy for wide-field interactive cell and particle manipulation on a chip

机译:光电镊子与无透镜全息显微镜集成在一起,可在芯片上进行宽域交互式细胞和粒子处理

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摘要

We demonstrate an optoelectronic tweezer (OET) coupled to a lensfree holographic microscope for realtime interactive manipulation of cells and micro-particles over a large field-of-view (FOV). This integrated platform can record the holographic images of cells and particles over the entire active area of a CCD sensor array, perform digital image reconstruction to identify target cells, dynamically track the positions of cells and particles, and project light beams to trigger light-induced dielectrophoretic forces to pattern and sort cells on a chip. OET technology has been previously shown to be capable of performing parallel single cell manipulation over a large area. However, its throughput has been bottlenecked by the number of cells that can be imaged within the limited FOV of a conventional microscope objective lens. Integrating lensfree holographic imaging with OET solves this fundamental FOV barrier, while also creating a compact on-chip cell/particle manipulation platform. Using this unique platform, we have successfully demonstrated real-time interactive manipulation of thousands of single cells and micro-particles over an ultra-large area of e.g., 240 mm~2 (i.e. 17.96 mm x 13.52 mm).
机译:我们演示了光电镊子(OET)与无透镜全息显微镜耦合,用于在大视野(FOV)上实时交互操作细胞和微粒。该集成平台可以在CCD传感器阵列的整个有效区域上记录细胞和粒子的全息图像,执行数字图像重建以识别目标细胞,动态跟踪细胞和粒子的位置,并投射光束以触发光感应介电泳力以对芯片上的细胞进行图案化和分类。先前已证明OET技术能够在大面积上执行并行单细胞操作。但是,其通量受到了在常规显微镜物镜的有限FOV范围内可以成像的细胞数量的限制。将无透镜全息成像与OET集成在一起,可以解决这一基本的FOV障碍,同时还可以创建一个紧凑的片上细胞/颗粒操纵平台。使用这个独特的平台,我们成功地演示了在240 mm〜2(即17.96 mm x 13.52 mm)的超大面积上成千上万个单个细胞和微粒的实时交互操作。

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