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荧光原位杂交的自发荧光校正

Autofluorescence correction for fluorescence in situ hybridization.

作者信息

Szöllösi J, Lockett S J, Balázs M, Waldman F M

机构信息

Department of Laboratory Medicine, University of California, San Francisco, USA.

出版信息

Cytometry. 1995 Aug 1;20(4):356-61. doi: 10.1002/cyto.990200412.

Abstract

Optimal sensitivity of fluorescence in situ hybridization (FISH) requires bright signals and low background fluorescence. Use of locus-specific probes is especially dependent on high sensitivity. Some tissue preparations show high autofluorescence, masking small or dim signals. We have developed a new method for subtracting autofluorescence from digital images on a pixel-by-pixel basis. It is based on the observation that fluorescent labels for FISH have narrower excitation and emission spectra than the chemical components responsible for autofluorescence. Our new approach uses calculation of the ratio of autofluorescence between multiple color images for correction of autofluorescence in each individual image. By subtracting autofluorescence components, we were able to enhance centromeric signals and make previously indistinguishable cosmid signals clearly visible. This image-processing approach to autofluorescence correction may widen the applicability of gene-specific probes in FISH analysis of tumor material.

摘要

荧光原位杂交(FISH)的最佳灵敏度需要明亮的信号和低背景荧光。使用位点特异性探针尤其依赖于高灵敏度。一些组织标本显示出高自发荧光,掩盖了小的或微弱的信号。我们开发了一种逐像素从数字图像中减去自发荧光的新方法。它基于这样的观察,即FISH的荧光标记比负责自发荧光的化学成分具有更窄的激发和发射光谱。我们的新方法使用多个彩色图像之间自发荧光比率的计算来校正每个单独图像中的自发荧光。通过减去自发荧光成分,我们能够增强着丝粒信号,并使以前无法区分的黏粒信号清晰可见。这种用于自发荧光校正的图像处理方法可能会扩大基因特异性探针在肿瘤材料FISH分析中的适用性。

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