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Evaluation of correction methods for coil-induced intensity inhomogeneities and their influence on trabecular bone structure parameters from MR images.

机译:线圈感应强度不均匀性的校正方法及其对MR图像对小梁骨结构参数的影响的评估。

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Magnetic resonance (MR) imaging-based quantitative trabecular bone structure analysis has gained increasing interest in osteoporotic fracture risk assessment and treatment evaluation related to osteoporosis. In vivo MR images of anatomic regions such as the proximal femur and distal tibia are generally acquired with a surface coil in order to obtain sufficient sensitivity and resolution for quantification of the trabeculae. However, these coils introduce intensity inhomogeneities which affect the trabecular bone structure analysis. This work evaluates the applicability of a fully automatic coil correction by nonparametric nonuniform intensity normalization (N3) in the analysis of trabecular bone parameters. The ability to correct for coil-induced intensity inhomogeneity was evaluated ex vivo on proximal femur specimens scanned with both a surface coil and a volume coil, which allowed for a direct evaluation of the performance of the coil correction methods without any major confounding factors. In addition, trabecular bone parameter values were correlated with values from high-resolution peripheral computed tomography (HR-pQCT) scans, and the reproducibility of trabecular bone parameters was evaluated in an in vivo study of repeat hip MR scans. The trabecular bone parameters determined from MR surface coil scans processed with the N3 coil correction method showed significant correlation (p < 0.05) with corresponding values from homogeneous intensity data in the ex vivo study. This can be compared to the correlation without coil correction (p < 0.5), and coil correction using low-pass filtering (LPF) (p < 0.53). The in vivo interscan variability was reduced from 8.9% to 12.8% using LPF-based to 3.6%-8.4% (CV) using N3 coil correction; hence the results showed that N3 is advantageous to LPF-based coil correction. No significant differences in correlation to HR-pQCT data were found for the coil correction methods. The significant correlations with volume coil data and high reproducibility of the N3 processed data imply that N3 coil correction preserve image information while accurately correcting for coil-induced intensity inhomogeneities, which makes it suitable for quantitative analysis of trabecular bone structure from MR images acquired with surface coils.
机译:基于磁共振(MR)成像的定量小梁骨结构分析越来越引起人们对骨质疏松性骨折风险评估和与骨质疏松症相关的治疗评估的兴趣。通常使用表面线圈来获取诸如股骨近端和胫骨远端的解剖区域的体内MR图像,以便获得足够的灵敏度和分辨率来量化小梁。但是,这些线圈引入了强度不均匀性,从而影响了小梁的骨结构分析。这项工作通过非参数非均匀强度归一化(N3)评估小梁骨参数分析中的全自动线圈校正的适用性。在用表面线圈和体积线圈扫描的股骨近端标本中,对离体评估线圈诱导的强度不均匀性的能力进行了离体评估,这可以直接评估线圈校正方法的性能,而没有任何主要的混杂因素。此外,小梁骨参数值与高分辨率外围计算机断层扫描(HR-pQCT)扫描得到的值相关,并且在重复性髋部MR扫描的体内研究中评估了小梁骨参数的可重复性。通过N3线圈校正方法处理的MR表面线圈扫描确定的小梁骨参数与离体研究中均质强度数据的相应值显示出显着相关性(p <0.05)。可以将其与没有线圈校正的相关性(p <0.5)和使用低通滤波(LPF)的线圈校正的相关性(p <0.53)进行比较。使用基于LPF的扫描仪,使用N3线圈校正将体内扫描间变异性从8.9%降低至12.8%;使用N3线圈校正将其降低至3.6%-8.4%(CV);因此,结果表明,N3有利于基于LPF的线圈校正。对于线圈校正方法,未发现与HR-pQCT数据相关的显着差异。与体积线圈数据和N3处理的数据的高可重复性之间的显着相关性意味着N3线圈校正可保留图像信息,同时可准确校正线圈引起的强度不均匀性,这使其适用于从表面获取的MR图像中对小梁骨结构进行定量分析线圈。

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