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SEGMENTATION AND DETECTION OF NUCLEI IN SILVER STAINED CELL SPECIMENS FOR EARLY CANCER DIAGNOSIS

机译:白银染色细胞标本中核细胞核的分割和检测早期癌症诊断

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For successful cure, cancer has to be detected as early as possible. Since cancer starts from a single cell, this can best be done using cytopathological methods. One important diagnostically relevant measure is the proliferation rate of the cells, which can be estimated from segmented silver stained nuclei. However, the microscopy images of silver stained specimens vary strongly in intensity and contrast and are furthermore compromised by an overall texture. We show that a precise segmentation of the nuclei is possible using a two-step approach. First, an oversegmentation with the mean shift algorithm is obtained. In a second step, these regions are merged to objects, guided by a suitable shape model, viz an ellipse, but simultaneously allowing deviations from this shape model. The segmentation results are compared to a gold standard of 8617 nuclei from 23 specimens of the thyroid gland, achieving a mean areal segmentation error of △A{sub}(nucleus)=12μm{sup}2 per nucleus.
机译:为了成功治愈,必须尽早检测癌症。由于癌症从单个细胞开始,因此可以使用细胞病理学方法来最好地完成。一个重要的诊断相关措施是细胞的增殖率,可以从分段的银染色核估计。然而,银染色标本的显微镜图像在强度和对比度强烈变化,并且还通过整体纹理损害。我们表明使用两步方法可以实现核的精确分割。首先,获得具有平均移位算法的过度解除。在第二步中,这些区域被合并到对象,由合适的形状模型,椭圆形,但同时允许与该形状模型的偏差。将分段结果与来自甲状腺三个标本的8617核的金标准进行比较,从而实现每核的△A{sub}(核)=12μm{sup} 2的平均面部分段误差。

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