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Wavelet Based Characterization of Vertebral Trabecular Bone Structure from MR Images of Specimen at 3 Tesla Compared to MicroCT Measurements

机译:基于小波的3特斯拉标本MR图像对椎骨小梁骨结构的表征与MicroCT测量的比较

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Trabecular bone structure and bone density contribute to the strength of bone and are important in the study of osteoporosis. Wavelets are a powerful tool to characterize and quantify texture in an image. In this study the thickness of trabecular bone was analyzed in 8 cylindrical cores of the vertebral spine. Images were obtained from 3 Tesla (T) magnetic resonance imaging (MRI) and micro-computed tomography (muCT). Results from the wavelet based analysis of trabecular bone were compared with standard two-dimensional (2D) structural parameters (analogous to bone histomorphometry) obtained using mean intercept length (MR images) and direct three-dimensional (3D) distance transformation methods (muCT images). Additionally, the bone volume fraction was determined from MR images. We conclude that the wavelet based analyses delivers comparable results to the established MR histomorphometric measurements. The average deviation in trabecular thickness was less than one pixel size between the wavelet and the standard approach for both MR and muCT analysis. Since the wavelet based method is less sensitive to image noise, we see an advantage of wavelet analysis of trabecular bone for MR imaging when going to higher resolution
机译:小梁的骨结构和骨密度有助于骨骼的强度,在骨质疏松症的研究中很重要。小波是表征和量化图像纹理的强大工具。在这项研究中,分析了椎骨的8个圆柱状核中的小梁骨厚度。图像是从3特斯拉(T)磁共振成像(MRI)和微型计算机断层扫描(muCT)获得的。将基于小波分析的小梁骨的结果与使用平均截距(MR图像)和直接三维(3D)距离转换方法(muCT图像)获得的标准二维(2D)结构参数(类似于骨组织形态学)进行比较)。另外,从MR图像确定骨体积分数。我们得出结论,基于小波的分析可提供与已建立的MR组织形态计量学测量结果相当的结果。在小波和MR和muCT分析的标准方法之间,小梁厚度的平均偏差小于一个像素大小。由于基于小波的方法对图像噪声的敏感度较低,因此当高分辨率时,我们看到了小梁骨小波分析在MR成像中的优势

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