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Methods and System for Segmentation of Isolated Nuclei in Microscopic Breast Fine Needle Aspiration Cytology Images

机译:微观乳房细针假咬细胞学图像中分离核分割的方法和系统

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Computer vision systems for automated breast cancer diagnosis using Fine Needle Aspiration Cytology (FNAC) images are under development for a while now. Accurate segmentation of the nuclei in microscopic images is crucial for functioning of these systems, as most quantify and analyze nuclear features for diagnosis. This paper presents a nucleus segmentation system (NSS) involving pre-processing, pre-segmentation and refined segmentation stages. The NSS includes a novel pixel transformation step to create a high contrast grayscale representation of the input color image. The grayscale image gives NSS the capability- to disregard elements that mimic nuclear morphological and luminescence characteristics, and to minimize effects of non-specific staining of cytoplasm by Hematoxylin. Experimental results illustrate generalizability of the NSS to use multiple refined segmentation techniques and particularly achieve accurate nucleus segmentation using active contours without edges (F-score > 0.92). The paper also presents the results of experiments conducted to study the impact of image preprocessing steps on the NSS performance. The pre-processing steps are observed to improve accuracy and consistency across tested refined segmentation techniques.
机译:使用细针穿刺细胞学(FNAC)图像的自动乳腺癌诊断计算机视觉系统正在开发一段时间。微观图像中细胞核的精确分割对于这些系统的功能至关重要,以及大多数量化和分析核特征以进行诊断。本文介绍了涉及预处理,预分割和精制分割阶段的核细胞分段系统(NSS)。 NSS包括一种新颖的像素变换步骤,以创建输入彩色图像的高对比度灰度表示。灰度图像使NSS能够忽视模拟核形态学和发光特性的元素,并最大限度地减少苏木精异的细胞质的非特异性染色的影响。实验结果说明了NSS使用多种精制分段技术的概括性,特别是使用无边缘的有源轮廓(F分数> 0.92)的主动轮廓来特别达到精确的核分裂。本文还介绍了进行实验的结果,以研究图像预处理步骤对NSS性能的影响。观察到预处理步骤以提高经过测试的精制分段技术的精度和一致性。

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