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Efficient pairing of chromosomes in metaphase image for Automated Karyotyping

机译:有效配对中期图像中的染色体以进行自动核型分析

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A Karyogram is an image representation of human chromosomes arranged in order of decreasing size and paired in 23 classes. Automatic pairing of the chromosomes is a difficult task because the chromosomes appear blurred with undefined edges and low level of band pattern information. This paper proposes an efficient approach based on determining the propinquity between the chromosomes to automatically pair them. Besides the features used in traditional karyotyping procedures, a novel Nearness Factor, ‘N-factor’ is defined to pair the chromosomes based on the similarity in the band patterns. The performance of the algorithm was tested and analyzed using 50 images of group ‘A’ and group ‘C’ from publically available data set giving an overall pairing accuracy of 100 % for group ‘A’ and 97 % for group ‘C’. The experimentation demonstrates that the proposed ‘N-factor’ achieves higher and robust performance in pairing chromosomes.
机译:Karyogram是人类染色体的图像表示,该染色体按大小递减的顺序排列,并分为23类。染色体的自动配对是一项艰巨的任务,因为染色体看起来模糊不清,边缘不确定,条带模式信息水平低。本文提出了一种有效的方法,该方法基于确定染色体之间的临近性以自动配对它们。除了传统核型分析程序中使用的功能外,还定义了一种新颖的“近因”因子“ N因子”,以根据条带模式的相似性来配对染色体。使用来自公开可用数据集的50组“ A”组和“ C”组图像对算法的性能进行了测试和分析,得出“ A”组的整体配对精度为100%,“ C”组的整体配对精度为97%。实验表明,提出的“ N因子”在染色体配对中具有更高且更稳定的性能。

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