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Bone age assessment based on phalanx radiograms

机译:基于Phalanx射线的骨龄评估

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摘要

To identify the growth status of children, more and more bone age assessment (BAA) systems based on Tanner-Whitehouse (TW) method have been developed to estimate skeletal maturity of children. Therefore, with the concept of TW method, our aim is to develop a useful BAA system for the phalanx radiograms. In this study, the phalangeal bone regions of interest (PROIs) and epiphyseal/metaphyseal regions of interest (EMROIs) are segmented from the two left-hand radiograms. The textural, morphological and shape descriptor features are extracted from EMROIs for the quantization of skeletal maturity. The fuzzy logic rule in conjunction with principal component analysis (PCA) is applied to construct the model of the classification. The database comprising 1550 left-hand radiograms were collected from normal female children aging from 2 to 16 years. For each age, 15 images were used to constitute training data. The classification results by testing on the rest data demonstrate that the proposed BAA system is capable of providing the correct rate of 71.17% with 1 year tolerance and 89.74% with 1.5 year tolerance.
机译:为了确定儿童的生长状况,越来越多的基于Tanner-Whitehouse(TW)方法的骨骼年龄评估(BAA)系统,以估算儿童的骨骼成熟度。因此,随着TW方法的概念,我们的目标是为Phalanx射线图制定一个有用的BAA系统。在本研究中,感兴趣的骨骨园(Prois)和骺骨/复杂地区的感兴趣(Emrois)被分割于两种左手射线图。从Emrois中提取纹理,形态和形状描述符特征,以进行骨骼成熟度的量化。模糊逻辑规则与主成分分析(PCA)一起应用于构建分类模型。包括1550名左手放射线的数据库从2至16岁开始的正常女性儿童收集。对于每个年龄,使用15个图像来构成培训数据。通过对REST数据进行测试的分类结果表明,所提出的BAA系统能够提供71.17%的正确速率,其耐受性为1年,耐受1.5年的89.74%。

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