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首页> 外文期刊>Computers in Biology and Medicine >Evaluation and benchmarking of level set-based three forces via geometric active contours for segmentation of white blood cell nuclei shape
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Evaluation and benchmarking of level set-based three forces via geometric active contours for segmentation of white blood cell nuclei shape

机译:基于水平的三个力的评估和基准通过几何活性轮廓进行白细胞核核心的分割

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摘要

The segmentation of white blood cells and their nuclei is still difficult and challenging for many reasons, including the differences in their colour, shape, background and staining techniques, the overlapping of cells, and changing cell topologies. This paper shows how these challenges can be addressed by using level set forces via edge-based geometric active contours. In this work, three level set forces-based (curvature, normal direction, and vector field) are comprehensively studied in the context of the problem of segmenting white blood cell nuclei based on geometric flows. Cell images are first pre-processed, using contrast stretching and morphological opening and closing in order to standardise the image colour intensity, to create an initial estimate of the cell foreground and to remove the narrow links between lobes and cell bulges. Next, segmentation is conducted to prune out the white blood cell nucleus region from the cell wall and cytoplasm by combining the theory of curve evolution using curvature, normal direction, and vector field-based level set forces and edge-based geometric active contours. The overall performance of the proposed segmentation method is compared and benchmarked against existing techniques for nucleus shape detection, using the same databases. The three level set forces studied here (curvature, normal direction, and vector field) via edge-based geometric active contours achieve F-index values of 92.09%, 91.13%, and 90.76%, respectively, and the proposed segmentation method results in better performance than all other techniques for all indices, including Jaccard distance, boundary displacement error, and Rand index.
机译:由于许多原因,白细胞和它们的核细胞核的分割仍然困难和挑战,包括颜色,形状,背景和染色技术,细胞重叠和改变细胞拓扑的差异。本文显示了如何通过使用基于边缘的几何活动轮廓来解决这些挑战。在这项工作中,在基于几何流动分割白细胞核的问题的背景下,全面地研究了三个水平的基于力(曲率,正常方向和矢量场)。首先使用对比度拉伸和形态开度和关闭以标准化图像颜色强度,以创造细胞前景的初始估计,并拆下凸起和细胞凸起之间的窄环节的初始估计。接下来,通过使用曲率,法线方向和矢量场的水平设定力和边缘的几何活动轮廓组合曲线演化理论,进行分割以从细胞壁和细胞质中从细胞壁和细胞质中修剪白细胞核区域。使用相同的数据库比较所提出的分割方法的整体性能和基准测试核形状检测的现有技术。这里的三个水平设定力通过边缘的几何活性轮廓研究了(曲率,正常方向和矢量场),达到92.09%,91.13%和90.76%的F折射率值,并且所提出的分段方法会导致更好性能而不是所有索引的所有其他技术,包括Jaccard距离,边界位移误差和rand索引。

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