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Super-resolution three-dimensional fluorescence and optical diffraction tomography of live cells using structured illumination generated by a digital micromirror device

机译:使用数字微镜设备生成的结构化照明对活细胞进行超高分辨率三维荧光和光学衍射层析成像

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We present a multimodal approach for measuring the three-dimensional (3D) refractive index (RI) and fluorescence distributions of live cells by combining optical diffraction tomography (ODT) and 3D structured illumination microscopy (SIM). A digital micromirror device is utilized to generate structured illumination patterns for both ODT and SIM, which enables fast and stable measurements. To verify its feasibility and applicability, the proposed method is used to measure the 3D RI distribution and 3D fluorescence image of various samples, including a cluster of fluorescent beads, and the time-lapse 3D RI dynamics of fluorescent beads inside a HeLa cell, from which the trajectory of the beads in the HeLa cell is analyzed using spatiotemporal correlations.
机译:我们提出了一种通过结合光学衍射层析成像(ODT)和3D结构照明显微镜(SIM)来测量活细胞的三维(3D)折射率(RI)和荧光分布的多峰方法。利用数字微镜设备为ODT和SIM生成结构化的照明图案,从而实现快速稳定的测量。为了验证其可行性和适用性,所提出的方法用于从HeLa细胞中测量各种样品(包括荧光珠簇)的3D RI分布和3D荧光图像,以及HeLa细胞内部荧光珠的延时3D RI动态。使用时空相关性分析了HeLa细胞中珠子的轨迹。

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