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Interactive algorithms for rapid enumeration of hybridization signals in individual whole-cell nuclei inside intact-tissue specimens

机译:互动算法,用于快速枚举杂交信号在完整组织标本内单个细胞核中的杂交信号

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Fluorescence in situ hybridization (FISH) is useful for analyzing specific nucleic acid sequences in individual cells. Its application to tissue sections has been limited however because of the difficulties of performing the hybridization and analysis in sections that are thick enough to contain intact nuclei. Recent improvements in FISH permit hybridization with chromosome-specific, centromeric probes throughout 20 $mu@m formalin fixed, paraffin- embedded sections, which do contain many intact nuclei. This paper describes software to facilitate analysis of these 3D hybridizations. We have developed two algorithms for analyzing 3D, confocal images of thick sections. One displays 2D, maximum-intensity, projection images through the original 3D image at different angles. When projections are viewed sequentially, the 3D image appears semi-transparent and rotates. The second algorithm allows interactive enumeration of FISH signals. Each signal is marked by the analyst. Then, for each pair of marked signals, a 2D slice image along the line connecting both marked signals and parallel to the z (depth) axis is displayed. From this slice, the analyst decides if the signals are in the same or different nuclei, or if the signals should be rejected because they are in a nucleus truncated by the upper or lower surface of the section. After consideration of all pairs of signals, the algorithm produces a map of the tissue section showing the numbers of signals in each of the intact nucleus. The algorithms enable analysis of small, premalignant and early malignant lesions and infiltrative lesions that cannot be analyzed by other molecular techniques and permit the direct correlation of FISH information with histology/cytology.
机译:原位杂交(鱼类)的荧光可用于分析个体细胞中的特定核酸序列。然而,其对组织切片的应用受到限制,因为在足以含有完整核的厚度的截面中进行杂交和分析的困难。 Fish允许用染色体特异性的铬胺探针杂交的最新改善在20多次MU @ M @ M锻造蛋白固定的石蜡嵌入部分,这确实含有许多完整的核。本文介绍了促进这些3D杂交的分析的软件。我们开发了用于分析3D的两种算法,厚截面的共聚焦图像。通过不同的角度显示通过原始3D图像的2D,最大强度,投影图像。顺序查看投影时,3D图像显示半透明并旋转。第二算法允许鱼信号的交互式枚举。每个信号由分析师标记。然后,对于每对标记信号,显示沿着连接标记信号并平行于Z(深度)轴的线的2D切片图像。根据该切片,分析师确定信号是否处于相同或不同的核,或者如果应拒绝信号,因为它们处于由该部分的上表面截短的核。在考虑所有对信号对之后,该算法产生组织部分的地图,示出了每个完整核中的信号的数量。该算法能够分析小型,前一种和早期恶性病变和无法通过其他分子技术分析的渗透病变,并允许鱼类信息与组织学/细胞学的直接相关。

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