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Tomographic imaging of a suspending single live cell using optical tweezer-combined full-field optical coherence tomography

机译:光学镊子结合全场光学相干层析成像技术对单个活细胞的层析成像

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摘要

We propose a label-free depth-resolved tomographic scheme for imaging a single live cell in fluid. This approach utilizes a modified time-domain full-field optical coherence tomography (FF-OCT) system combined with an optical tweezer technique. The optical trap for holding a moving specimen is made by tightly focusing a 1064 nm Q-switching pulsed laser beam with a 1.0 NA microscope objective in the sample arm of the FF-OCT part. By cosharing the probe for both systems, the optical actions of trapping and cellular resolution tomographic imaging could be achieved simultaneously. Feasibility of the combined system is demonstrated by imaging micron-sized polystyrene beads and a living suspension cell in medium.
机译:我们提出了一种无标记的深度分辨层析成像方案,用于对流体中的单个活细胞进行成像。这种方法利用改进的时域全场光学相干断层扫描(FF-OCT)系统与光学镊子技术相结合。用于固定移动样本的光阱是通过将1064 nm调Q脉冲激光束与1.0 NA显微镜物镜紧密聚焦在FF-OCT部件的样品臂中制成的。通过将探针同时用于两个系统,可以同时实现捕获和细胞分辨率层析成像的光学作用。组合系统的可行性通过在介质中对微米大小的聚苯乙烯珠和活的悬浮细胞成像来证明。

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