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通过外周定量计算机断层扫描技术扫描的人体骨标本的小梁骨矿物质与计算结构:与生物力学特性的关系

Trabecular bone mineral and calculated structure of human bone specimens scanned by peripheral quantitative computed tomography: relation to biomechanical properties.

作者信息

Jiang Y, Zhao J, Augat P, Ouyang X, Lu Y, Majumdar S, Genant H K

机构信息

Department of Radiology, University of California, San Francisco 94143-0628, USA.

出版信息

J Bone Miner Res. 1998 Nov;13(11):1783-90. doi: 10.1359/jbmr.1998.13.11.1783.

Abstract

The relationship of cortical bone mineral density (BMD), and geometry to bone strength has been well documented. In this study, we used peripheral quantitative computerized tomography (pQCT) to acquire trabecular BMD and high-resolution images of trabeculae from specimens to determine their relationship with biomechanical properties. Fifty-eight human cubic trabecular bone specimens, including 26 from the vertebral bodies, were scanned in water and air. Trabecular structure was quantitated using software developed with Advanced Visual Systems interfaced on a Sun/Sparc Workstation. BMD was also obtained using a whole-body computerized tomography scanner (QCT). Nondestructive testing of the specimens was performed to assess their elastic modulus. QCT and pQCT measurements of BMD of specimens in water were strongly correlated (r2 = 0.95, p < 0.0001), with a slope (0.96) statistically not significantly different from 1. Strong correlations were found between pQCT measurements of specimens in water and in air, for BMD (r2 = 0.96, p < 0.0001), and for apparent trabecular structural parameters (r2 = 0.89-0.93, p < 0.0001). Correlations were moderate between BMD and apparent trabecular structural parameters (r2 = 0.37-0.64, p < 0.0001). Precision as coefficient of variation (CV) and standardized coefficient of variation (SCV) for these measurements was < 5%. For the vertebral specimens, the correlation was higher between elastic modulus and BMD (r2 = 0.76,p < 0.0001) than between elastic modulus and apparent trabecular structural parameters (r2 = 0.58-0.72, p < 0.0001), while the addition of apparent trabecular nodes and branches to BMD in a multivariate regression model significantly increased the correlation with the elastic modulus (r2 = 0.86, p < 0.01). Thus, pQCT can comparably and reproducibly measure trabecular bone mineral in water or air, and trabecular structure can be quantitated from pQCT images. The combination of volumetric BMD with trabecular structural parameters rather than either alone improves the prediction of biomechanical properties. Such a noninvasive approach may be useful for the preclinical study of osteoporosis.

摘要

皮质骨矿物质密度(BMD)及骨几何结构与骨强度之间的关系已有充分记录。在本研究中,我们使用外周定量计算机断层扫描(pQCT)获取小梁骨BMD以及标本小梁的高分辨率图像,以确定它们与生物力学特性的关系。58个人类立方体小梁骨标本,包括26个椎体标本,在水中和空气中进行了扫描。使用在Sun/Sparc工作站上与Advanced Visual Systems接口开发的软件对小梁结构进行定量分析。还使用全身计算机断层扫描仪(QCT)获得BMD。对标本进行无损检测以评估其弹性模量。标本在水中的QCT和pQCT BMD测量结果高度相关(r2 = 0.95,p < 0.0001),斜率(0.96)在统计学上与1无显著差异。在水中和空气中的标本pQCT测量结果之间,对于BMD(r2 = 0.96,p < 0.0001)以及表观小梁结构参数(r2 = 0.89 - 0.93,p < 0.0001)均发现高度相关。BMD与表观小梁结构参数之间的相关性中等(r2 = 0.37 - 0.64,p < 0.0001)。这些测量的变异系数(CV)和标准化变异系数(SCV)表示的精密度<5%。对于椎体标本,弹性模量与BMD之间的相关性(r2 = 0.76,p < 0.0001)高于弹性模量与表观小梁结构参数之间的相关性(r2 = 0.58 - 0.72,p < 0.0001),而在多变量回归模型中,将表观小梁节点和分支添加到BMD中可显著提高与弹性模量的相关性(r2 = 0.86,p < 0.01)。因此,pQCT能够可比且可重复地测量水中或空气中的小梁骨矿物质,并且可以从pQCT图像中对小梁结构进行定量分析。体积BMD与小梁结构参数的组合而非单独使用其中任何一个,可改善对生物力学特性的预测。这种非侵入性方法可能对骨质疏松症的临床前研究有用。

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