Ancin H, Roysam B, Dufresne T E, Chestnut M M, Ridder G M, Szarowski D H, Turner J N
Electrical, Computer, and Systems Engineering Department, Rensselaer Polytechnic Institute, Troy, NY 12180-3590, USA.
Cytometry. 1996 Nov 1;25(3):221-34. doi: 10.1002/(SICI)1097-0320(19961101)25:3<221::AID-CYTO3>3.0.CO;2-I.
Automated three-dimensional (3-D) image analysis methods are presented for rapid and effective analysis of populations of fluorescently labeled 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 are: algorithms for efficient data pre-processing and adaptive segmentation, effective handling of image anisotrophy, 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, anisotrophy, 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 analyzing images of nuclei from densely packed regions in thick sections of rat liver, and brain that were labeled with a fluorescent Schiff reagent.
本文介绍了自动化三维(3-D)图像分析方法,用于快速有效地分析厚组织切片中经共聚焦显微镜三维成像的荧光标记细胞或细胞核群体。这里介绍的方法在我们早期的工作(罗伊萨姆等人:《显微镜学杂志》173: 115 - 126, 1994)基础上有了很大改进。报告的主要进展包括: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,以及在可用时利用图像梯度信息分离重叠或相连簇的快速三维形态学算法。该方法的一个特殊功能是能够分离紧密堆积且相连的细胞核簇。这项工作中克服的一些挑战包括对成像噪声、各向异性以及图像参数(如图像强度、物体大小和形状)的大幅变化进行高效有效的处理。该方法能够处理细胞间、细胞内、图像间和图像内的显著差异。研究表明,该方法快速、稳健且适应性强。文中给出了实例,以说明该方法在分析用荧光席夫试剂标记的大鼠肝脏和大脑厚切片中密集区域的细胞核图像方面的适用性。