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Limitations on Optical Sectioning in Live-Cell Confocal Microscopy

机译:活细胞共聚焦显微镜中光学切片的局限性

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In three-dimensional (3-D) live-cell microscopy, it has been common to treat cells as having a constant refractive index (RI). Although the variations in RI associated with the nucleus and other organelles were recognized from phase- and differential interference contrast (DIC) images, it was assumed that they were small and would not affect 3-D fluorescence images obtained using widefield/deconvolution, confocal of multiphoton imaging. This paper makes clear that this confidence was misplaced. Confocal images made using backscattered light (BSL) to image the flat, glass/water interfaces above and below living microscope specimens should reveal these structures as flat and featureless. That the image of the interface on the far side of the cells is neither flat nor featureless indicates that the "optical section" surface can be profoundly distorted by the RI irregularities associated with the presence of nuclei and other subcellar structures. This observation calls into question the reliability of images made using any of the current methods for performing 3-D light microscopy of living cells.
机译:在三维(3-D)活细胞显微镜中,通常将细胞视为具有恒定折射率(RI)。尽管可以从相和微分干涉对比(DIC)图像中识别出与核和其他细胞器相关的RI变化,但可以认为它们很小,不会影响使用宽视野/解卷积,共焦的3D荧光图像。多光子成像。本文清楚地表明这种信心是错误的。使用后向散射光(BSL)制作的共聚焦图像可以对活的显微镜标本的上方和下方的平面,玻璃/水界面成像,从而可以显示出这些结构是平坦且无特征的。细胞远侧的界面图像既不平坦也不无特征,表明“光学截面”表面可能会由于与核和其他亚细胞结构的存在相关的RI不规则性而严重变形。该观察结果使人们质疑使用活细胞进行3-D光学显微镜检查的任何当前方法制作的图像的可靠性。

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