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A Fully Automated Method for Segmentation and Thickness Map Estimation of Femoral and Acetabular Cartilages in 3D CT Images of the Hip

机译:髋部3D CT图像中股骨和髋臼软骨分割和厚度映射估计的全自动方法

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In this research, we propose a multi-step method for automatic segmentation of the hip femoral and acetabular cartilages from CT images. Differentiation of the acetabular and femoral cartilages in conventional CT images due to very narrow space and low intensity of the articular space is very difficult. For this reason, MRI of the hip under continuous leg traction is the choice for assessment of the hip articular cartilage. However, this procedure is time consuming, painful, and hence inconvenient. By injecting the contrast media in the hip during data acquisition, we separated the femoral and acetabular cartilage from each other. The multi-step approach for segmentation of the femoral and acetabular cartilages is as follows. We first enhance the dynamic range and contrast of the data set by a conventional procedure. We then estimate the center of the femoral head utilizing a Hough transform. The estimated center is used as a pivotal point for beginning the process. Next, based on anatomical knowledge about the femoral head shape and size, we derive a region of interest (ROI) for further operations. In this case, by employing an Image Bottom Hat technique and anatomical knowledge about the curved shaped of the cartilages, we extract the valleys between contrast media and hip bones. The valley between the contrast media and femoral head and pelvis bone is associated with the femoral and acetabular cartilages. The anatomical assumptions we apply in this research is valid in most hip joint images.
机译:在本研究中,我们提出了一种多步骤方法,用于从CT图像自动分割髋关节股骨和髋臼软骨。由于具有非常窄的空间和关节空间的低强度,传统CT图像中髋臼和股骨软骨的分化非常困难。因此,连续腿部牵引下髋关节的MRI是评估髋关节软骨的选择。然而,这个程序是耗时,痛苦,因此不方便。通过在数据采集期间在髋关节中注入造影剂,我们将股骨和髋臼软骨彼此分开。用于股骨和髋臼软骨的分割的多步方法如下。我们首先通过传统程序增强数据集的动态范围和对比度。然后,我们利用霍夫变换估计股骨头的中心。估计的中心用作开始该过程的关键点。接下来,基于关于股骨头形状和尺寸的解剖知识,我们推导出一种感兴趣的区域(ROI)以获得进一步的操作。在这种情况下,通过采用图像底帽技术和关于软骨弯曲形状的解剖知识,我们在造影剂和髋部骨之间提取谷物。造影剂和股骨头和骨盆之间的山谷与股骨和髋臼软骨相关。我们在本研究中应用的解剖假设在大多数髋关节图像中有效。

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