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Raman Imaging of Neoplastic Cells in Suspension

机译:悬液中肿瘤细胞的拉曼成像

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The combination of Raman spectroscopy and Optical Tweezers has been used to trap living cells and collect information about their biochemical state. Cells can continue living in such traps for periods of hours, allowing acquisition of time resolved Raman spectra. However no spatial information can be acquired as the cells continue to rotate and move in the single beam trap. Here we describe the development of Holographic Optical Tweezers (HOT) for the controlled movement of floating cells in order to construct their Raman images. Instead of a single trap, rapidly programmable multiple trapping points can be produced around the periphery of the cells to impede the rotational motion of the cell. By trapping and scanning the cell using HOT relative to a fixed Raman exciting laser, a point by point image of the cell can be constructed. We use an interactive program that permits us to position the trapping points relative to the live image feed we see from the microscope, using point and click. To demonstrate the possibilities of this technique images are shown of floating Jurkat cells.
机译:拉曼光谱仪和光学镊子的组合已用于捕获活细胞并收集有关其生化状态的信息。细胞可以继续在此类陷阱中存活数小时,从而获得时间分辨拉曼光谱。但是,随着细胞在单个光束阱中继续旋转和移动,无法获取空间信息。在这里,我们描述了全息光学镊子(HOT)的发展,以控制浮动细胞的运动,以构建其拉曼图像。代替单个陷阱,可以在单元的周围产生快速可编程的多个捕捉点,以阻止单元的旋转运动。通过使用相对于固定拉曼激发激光器的HOT捕获和扫描细胞,可以构建细胞的逐点图像。我们使用一个交互式程序,该程序允许我们使用指向和点击的方式相对于从显微镜看到的实时图像进给来定位陷印点。为了展示这种技术的可能性,显示了漂浮的Jurkat细胞的图像。

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