首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >ADVANCES IN AUTOMATED 3-D IMAGE ANALYSIS OF CELL POPULATIONS IMAGED BY CONFOCAL MICROSCOPY
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ADVANCES IN AUTOMATED 3-D IMAGE ANALYSIS OF CELL POPULATIONS IMAGED BY CONFOCAL MICROSCOPY

机译:共聚焦显微镜成像对细胞群体进行自动3-D图像分析的进展

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摘要

Automated three-dimensional (3-D) image analysis methods are presented for rapid and effective analysis of populations of fluorescently labelled cells or nuclei in thick tissue sections that have been imaged three dimensionally using a confocal microscope, The methods presented here greatly improve upon our earlier work (Roysam et al,:J Microsc 173: 115-126, 1994), The principal advances reported ate: algorithms for efficient data pre-processing and adaptive segmentation, effective handling of image anisotropy, and fast 3-D morphological algorithms for separating overlapping or connected clusters utilizing image gradient information whenever available, A particular feature of this method is its ability to separate densely packed and connected clusters of cell nuclei, Some of the challenges overcome in this work include the efficient and effective handling of Imaging noise, anisotropy, and large variations in image parameters such as intensity, object size, and shape. The method is able to handle significant inter-cell, intra-cell, inter-image, and intra-image variations, Studies indicate that this method is rapid, robust, and adaptable, Examples were presented to illustrate the applicability of this approach to analysing images of nuclei from densely packed regions in thick sections of rat liver, and brain that were labelled with a fluorescent Schiff reagent. (C) 1996 Wiley-Llss, Inc. [References: 51]
机译:提出了自动三维(3-D)图像分析方法,可快速有效地分析使用共聚焦显微镜三维成像的厚组织切片中荧光标记的细胞或细胞核的数量,此处介绍的方法大大改进了我们较早的工作(Roysam等,:J Microsc 173:115-126,1994),主要进展报告为:高效数据预处理和自适应分割算法,图像各向异性的有效处理,以及快速3D形态学算法只要有可用的图像梯度信息,就可以分离重叠或相连的簇。该方法的一个特殊功能是它能够分离密集排列和相连的细胞核簇。这项工作克服的一些挑战包括有效处理成像噪声,各向异性,以及图像参数(例如强度,物体大小和形状)的较大变化。该方法能够处理重要的单元间,单元内,图像间和图像内变化,研究表明该方法快速,可靠且适应性强,并通过实例说明了该方法在分析中的适用性。用荧光席夫试剂标记的大鼠肝脏和大脑厚部分密集区域的核图像。 (C)1996 Wiley-Llss,Inc. [参考:51]

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