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人体前臂的体内高分辨率三维定量计算机断层扫描

In vivo high resolution 3D-QCT of the human forearm.

作者信息

Laib A, Häuselmann H J, Rüegsegger P

机构信息

Institute for Biomedical Engineering, University of Zürich and Swiss Federal Institute of Technology (ETH).

出版信息

Technol Health Care. 1998 Dec;6(5-6):329-37.

Abstract

In vivo examinations of bone microarchitecture have become available recently through high resolution computed tomography (3D-QCT) and magnetic resonance imaging. The spatial resolution of the resulting images, however, is not sufficient to depict individual trabeculae in their true shape. Nevertheless, structural indices such as relative bone volume, trabecular number, mean thickness and mean separation can be extracted with the help of a ridge detection algorithm. Precision of the procedure is of the order of 1%, accuracy is ascertained using a micro-CT based calibration. In this work we report first results of time serial examinations. Eighteen healthy postmenopausal women (no HRT) were measured at months 0, 6, and 12, and the temporal changes were analyzed. Examination site was the distal radius. The above mentioned structural indices, the average densities and the thickness of the cortical shell were determined. Of the 18 women 6 showed no significant bone loss of any kind, 5 lost primarily cancellous bone, 4 lost primarily cortical bone, and 3 had a substantial loss of cortical as well as cancellous bone. We conclude that even in a homogenous group such as postmenopausal women, there are considerable differences in the reason why bone is weakened and that high resolution 3D-QCT allows to differentiate between various types of bone loss.

摘要

近年来,通过高分辨率计算机断层扫描(3D-QCT)和磁共振成像技术,可以在体内对骨微结构进行检查。然而,所得图像的空间分辨率不足以真实描绘单个小梁的形状。尽管如此,借助脊线检测算法,可以提取诸如相对骨体积、小梁数量、平均厚度和平均间距等结构指标。该方法的精度约为1%,通过基于微CT的校准来确定准确性。在这项工作中,我们报告了时间序列检查的初步结果。对18名健康的绝经后妇女(未接受激素替代疗法)在第0、6和12个月进行了测量,并分析了时间变化。检查部位为桡骨远端。测定了上述结构指标、平均密度和皮质骨壳厚度。18名女性中,6名未出现任何明显的骨质流失,5名主要流失松质骨,4名主要流失皮质骨,3名皮质骨和松质骨均有大量流失。我们得出结论,即使在绝经后妇女这样的同质群体中,骨质变弱的原因也存在相当大的差异,并且高分辨率3D-QCT能够区分不同类型的骨质流失。

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