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Analysis of human chromosome images: Application towards an automated chromosome classification

机译:人类染色体图像分析:在自动染色体分类中的应用

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Karyotyping is the process of arranging the chromosomes to examine the chromosomal abnormalities, a solution for birth defects. Karyotype is achieved from analyzing the metaspread chromosome images. Metaspread chromosome images generally have problem related with overlapping and touching of chromosomes with each other. Segmentation and separation of overlapping and touching chromosomes are still an open issue. The paper proposes an automated algorithm to separate the touching chromosomes and overlapping chromosomes from G-Band metaspread images. Segmentation is performed by obtaining the interesting (concave and convex) points on the image contour. A proper hypothesis is performed for separating overlapped and touching chromosome images. The isolation of overlapping and touching metaspread chromosome image helps in accurate automated chromosome classification to obtain a karyotype. The overall accuracy of the proposed method works well for separation of touching chromosome with 97.09% and overlapped chromosome with 95%.
机译:核型分析是安排染色体以检查染色体异常(解决先天缺陷的一种方法)的过程。核型是通过分析传播的染色体图像来实现的。普遍传播的染色体图像通常具有与染色体彼此重叠和接触有关的问题。重叠和接触的染色体的分割和分离仍然是一个未解决的问题。本文提出了一种自动算法,可将接触染色体和重叠染色体与G波段元扩展图像分开。通过获得图像轮廓上的有趣(凹和凸)点来执行分割。执行适当的假设以分离重叠的和接触的染色体图像。重叠和接触的元扩散染色体图像的隔离有助于准确的自动染色体分类以获得核型。所提方法的总体准确度较好,分离接触染色体的比例为97.09%,重叠染色体的比例为95%。

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