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首页> 外文期刊>Applied optics >QUANTITATIVE COMPARISON OF BACKGROUND REJECTION, SIGNAL-TO-NOISE RATIO, AND RESOLUTION IN CONFOCAL AND FULL-FIELD LASER SCANNING MICROSCOPES
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QUANTITATIVE COMPARISON OF BACKGROUND REJECTION, SIGNAL-TO-NOISE RATIO, AND RESOLUTION IN CONFOCAL AND FULL-FIELD LASER SCANNING MICROSCOPES

机译:共焦和全场激光扫描显微镜的背景抑制,信噪比和分辨率的定量比较

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摘要

Development of a laser scanning microscope for simultaneous three-dimensional imaging in both a full-field laser scanning mode (FLSM) and a confocal laser scanning mode (CLSM) permits the direct comparison of axial resolution and out-of-focus background rejection as a function of sample thickness for both FLSM and CLSM with varying detector aperture (pinhole) radii. The sample-dependent detector aperture radii that optimize the signal-to-noise ratio (S/N) in the CLSM are experimentally determined. The results verify earlier calculations [Appl. Opt. 33, 603 (1994)], Using these results, we discuss the practical and theoretical limits on the S/N in the CLSM and compare them with those of a full-field epifluorescence microscope (FEM) that is enhanced by image deconvolution, The specimen volume over which the FLSM exhibits imaging properties that are equivalent to a FEM is calculated in the appendices. [References: 27]
机译:激光扫描显微镜的开发,可以在全场激光扫描模式(FLSM)和共焦激光扫描模式(CLSM)中同时进行三维成像,从而可以直接比较轴向分辨率和离焦背景抑制率。检测器孔径(针孔)半径变化的FLSM和CLSM的样品厚度的函数。实验确定了在CLSM中优化信噪比(S / N)的依赖样本的探测器孔径半径。结果验证了先前的计算[Appl。选择。 33,603(1994)],使用这些结果,我们讨论了CLSM中信噪比的实际和理论极限,并将其与通过图像反卷积增强的全场落射荧光显微镜(FEM)的信噪比进行了比较。在附录中计算了FLSM表现出与FEM等效的成像特性的标本体积。 [参考:27]

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