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新型拟人化髋关节模型可校正股骨近端骨密度的系统扫描间差异。

Novel anthropomorphic hip phantom corrects systemic interscanner differences in proximal femoral vBMD.

作者信息

Bonaretti S, Carpenter R D, Saeed I, Burghardt A J, Yu L, Bruesewitz M, Khosla S, Lang T

机构信息

Musculoskeletal Quantitative Imaging Research Group, Department of Radiology and Biomedical Imaging, University of California, 185 Berry Street, Lobby 6, Suite 350, San Francisco, CA 94107, USA.

出版信息

Phys Med Biol. 2014 Dec 21;59(24):7819-34. doi: 10.1088/0031-9155/59/24/7819.

Abstract

Quantitative computed tomography (QCT) is increasingly used in osteoporosis studies to assess volumetric bone mineral density (vBMD), bone quality and strength. However, QCT is confronted by technical issues in the clinical research setting, such as potentially confounding effects of body size on vBMD measurements and lack of standard approaches to scanner cross-calibration, which affects measurements of vBMD in multicenter settings. In this study, we addressed systematic inter-scanner differences and subject-dependent body size errors using a novel anthropomorphic hip phantom, containing a calibration hip to estimate correction equations, and a contralateral test hip to assess the quality of the correction. We scanned this phantom on four different scanners and we applied phantom-derived corrections to in vivo images of 16 postmenopausal women scanned on two scanners. From the phantom study, we found that vBMD decreased with increasing phantom size in three of four scanners and that inter-scanner variations increased with increasing phantom size. In the in vivo study, we observed that inter-scanner corrections reduced systematic inter-scanner mean vBMD differences but that the inter-scanner precision error was still larger than expected from known intra-scanner precision measurements. In conclusion, inter-scanner corrections and body size influence should be considered when measuring vBMD from QCT images.

摘要

定量计算机断层扫描(QCT)在骨质疏松症研究中越来越多地用于评估骨体积密度(vBMD)、骨质量和强度。然而,在临床研究环境中,QCT面临着技术问题,例如身体大小对vBMD测量的潜在混杂影响以及缺乏扫描仪交叉校准的标准方法,这影响了多中心环境中vBMD的测量。在本研究中,我们使用一种新型的拟人化髋部体模来解决扫描仪之间的系统差异和个体依赖的身体大小误差,该体模包含一个校准髋部以估计校正方程,以及一个对侧测试髋部以评估校正的质量。我们在四台不同的扫描仪上扫描了这个体模,并将体模衍生的校正应用于在两台扫描仪上扫描的16名绝经后女性的体内图像。从体模研究中,我们发现四台扫描仪中的三台中,vBMD随着体模大小的增加而降低,并且扫描仪之间的变化随着体模大小的增加而增加。在体内研究中,我们观察到扫描仪间校正减少了扫描仪间系统平均vBMD差异,但扫描仪间的精度误差仍然大于已知的扫描仪内精度测量所预期的值。总之,从QCT图像测量vBMD时应考虑扫描仪间校正和身体大小的影响。

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