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Classification of Long-Bone Fractures Based on Digital-Geometric Analysis of X-ray Images~1

机译:基于X射线图像〜1的数字几何分析的长骨骨折分类

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The classification of fractured of a patient plays an important role in orthopaedic evaluation and diagnosis. It not only aids in assessing the severity of the disease or injury but also serves as a basis of treatment or surgical correction. This paper proposes a novel approach to automated classification of long-bone fractures based on the analysis of an input X-ray image. The method consists of four major steps: (i) extraction of the bone-contour from a given X-ray image, (ii) identification of fracture-points or cracks, (iii) determination of an equivalent set of geometric features in tune with the Müller-AO clinical classification of fractures, and (iv) identification and detailed assessment of the fracture-type. The decision procedure makes use of certain geometric properties of digital curves such as relaxed digital straight line segments (RDSS), arcs, discrete curvature, and concavity index. The proposed method for the analysis of fractures is applied on different types of bone-images and is observed to have produced correct classification in most of the test-cases.
机译:患者骨折的分类在骨科评估和诊断中起着重要作用。它不仅有助于评估疾病或损伤的严重程度,而且可以作为治疗或手术矫正的基础。本文提出了一种基于输入X射线图像分析的自动分类长骨骨折的新方法。该方法包括四个主要步骤:(i)从给定的X射线图像中提取骨骼轮廓;(ii)识别断裂点或裂缝;(iii)确定一组等效的几何特征,以适应Müller-AO骨折的临床分类,以及(iv)识别和详细评估骨折类型。决策程序利用了数字曲线的某些几何属性,例如松弛的数字直线段(RDSS),圆弧,离散曲率和凹度指数。所提出的用于分析骨折的方法适用于不同类型的骨图像,并且在大多数测试用例中都可以观察到正确的分类。

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