Amos W B, White J G, Fordham M
Appl Opt. 1987 Aug 15;26(16):3239-43. doi: 10.1364/AO.26.003239.
Scanning confocal microscopy offers several potential advantages for light microscope studies of biological material. Foremost amongst these is the rejection of interfering signals from out-of-focus structures, which often seriously degrade images. The degradation in image quality with epifluorescence microscopy is particularly pronounced; an unfortunate situation, as this is one of the most commonly used techniques in biological research. Confocal imaging almost completely eliminates this problem and therefore promises to have a wide application in this area. We have developed a high-speed beam scanning confocal imaging system that can be used in conjunction with a conventional microscope, and have examined a variety of biological material using this system. In all cases we have found that confocal imaging gives a marked improvement in quality over conventional techniques. viewed with epifluorescence.
扫描共聚焦显微镜技术为生物材料的光学显微镜研究提供了几个潜在的优势。其中最主要的优势是能够排除来自离焦结构的干扰信号,这些信号常常会严重降低图像质量。落射荧光显微镜成像的图像质量下降尤为明显;这是一个不幸的情况,因为这是生物学研究中最常用的技术之一。共聚焦成像几乎完全消除了这个问题,因此有望在该领域得到广泛应用。我们开发了一种高速光束扫描共聚焦成像系统,它可以与传统显微镜结合使用,并使用该系统检查了各种生物材料。在所有情况下,我们都发现共聚焦成像在质量上比传统的落射荧光技术有显著提高。