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High-speed synthetic aperture microscopy for live cell imaging

机译:用于活细胞成像的高速合成孔径显微镜

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We present a high-speed synthetic aperture microscopy for quantitative phase imaging of live biological cells. We measure 361 complex amplitude images of an object with various directions of illumination covering an NA of 0.8 in less than one-thirteenth of a second and then combine the images with a phase-referencing method to create a synthesized phase image. Because of the increased depth selectivity, artifacts from diffraction that are typically present in coherent imaging are significantly suppressed, and lateral resolution of phase imaging is improved. We use the instrument to demonstrate high-quality phase imaging of live cells, both static and dynamic, and thickness measurements of a nanoscale cholesterol helical ribbon.
机译:我们提出了一种用于活生物细胞定量相成像的高速合成孔径显微镜。我们在不到十三分之一秒的时间内测量了361个具有不同照明方向,覆盖NA为0.8的物体的复振幅图像,然后将这些图像与相位参考方法组合在一起以创建合成的相位图像。由于增加的深度选择性,相干成像中通常存在的来自衍射的伪影得到了显着抑制,并且相位成像的横向分辨率得到了改善。我们使用该仪器演示了活细胞的高质量相位成像(静态和动态)以及纳米级胆固醇螺旋带的厚度测量。

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