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首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >Confocal DNA cytometry: A contour-based segmentation algorithm for automated three-dimensional image segmentation
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Confocal DNA cytometry: A contour-based segmentation algorithm for automated three-dimensional image segmentation

机译:共聚焦DNA细胞术:基于轮廓的自动3D图像分割算法

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Background: Confocal laser scanning microscopy (CLSM) presents the opportunity to perform three-dimensional OD) DNA content measurements on intact cells in thick histological sections. So far, these measurements have been performed manually, which is quite time-consuming. Methods: in this study, an intuitive contour-based segmentation algorithm for automatic 3D CLSM image cytometry of nuclei in thick histological sections is presented. To evaluate the segmentation algorithm, we measured the DNA content and volume of human liver and breast cancer nuclei in 3D CLSM images. Results: A high percentage of nuclei could be segmented fully automatically (e.g., human liver, 92%). Comparison with (time-consuming) interactive measurements on the same CLSM images showed that the results were well correlated (liver, r = 1.00; breast, r = 0.92). C onclusions: Automatic 3D CLSM image cytometry enables measurement of volume and DNA content of large numbers of nuclei in thick histological sections within an acceptable time. This makes large-scale studies feasible, whereby the advantages of CLSM can be exploited fully. The intuitive modular segmentation algorithm presented in this stud), detects and separates overlapping objects, also in two-dimensional (2D) space. Therefore, this algorithm may also be suitable for other applications. Cytometry 49:12-21, 2002. (C)2002 Wiley-Liss, Inc. [References: 38]
机译:背景:共聚焦激光扫描显微镜(CLSM)提供了对厚组织学切片中完整细胞进行三维OD)DNA含量测量的机会。到目前为止,这些测量都是手动执行的,这非常耗时。方法:在这项研究中,提出了一种基于轮廓的直观分割算法,用于在厚组织学切片中对细胞核进行自动3D CLSM图像细胞计数。为了评估分割算法,我们在3D CLSM图像中测量了人类肝脏和乳腺癌细胞核的DNA含量和体积。结果:高比例的原子核可以完全自动分割(例如,人类肝脏为92%)。在相同的CLSM图像上与(耗时的)交互式测量结果进行比较,结果表明相关性很好(肝脏,r = 1.00;乳房,r = 0.92)。结论:自动3D CLSM图像细胞术可在可接受的时间内测量厚组织学切片中大量核的体积和DNA含量。这使得大规模研究变得可行,从而可以充分利用CLSM的优势。此螺柱中呈现的直观模块化分割算法)也可以在二维(2D)空间中检测并分离重叠的对象。因此,该算法也可能适用于其他应用。 Cytometry 49:12-21,2002.(C)2002 Wiley-Liss,Inc. [参考:38]

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