Department of Endocrinology, Odense University Hospital, Denmark.
Calcif Tissue Int. 2011 Oct;89(4):335-46. doi: 10.1007/s00223-011-9523-z. Epub 2011 Aug 28.
The aim of this study was to assess structural indices from high-resolution peripheral quantitative computed tomography (HR-pQCT) images of the human proximal femur along with areal bone mineral density (aBMD) and compare the relationship of these parameters to bone strength in vitro. Thirty-one human proximal femur specimens (8 men and 23 women, median age 74 years, range 50-89) were examined with HR-pQCT at four regions of interest (femoral head, neck, major and minor trochanter) with 82 μm and in a subgroup (n = 17) with 41 μm resolution. Separate analyses of cortical and trabecular geometry, volumetric BMD (vBMD), and microarchitectural parameters were obtained. In addition, aBMD by dual-energy X-ray absorptiometry (DXA) was performed at conventional hip regions and maximal compressive strength (MCS) was determined in a side-impact biomechanical test. Twelve cervical and 19 trochanteric fractures were confirmed. Geometry, vBMD, microarchitecture, and aBMD correlated significantly with MCS, with Spearman's correlation coefficients up to 0.77, 0.89, 0.90, and 0.85 (P < 0.001), respectively. No differences in these correlations were found using 41 μm compared to 82 μm resolution. In multiple regression analysis of MCS, a combined model (age- and sex-adjusted) with aBMD and structural parameters significantly increased R (2) values (up to 0.90) compared to a model holding aBMD alone (R (2) up to 0.78) (P < 0.05). Structural parameters and aBMD are equally related to MCS, and both cortical and trabecular structural parameters obtained from HR-pQCT images hold information on bone strength complementary to that of aBMD.
本研究旨在评估人体股骨近端的高分辨率外周定量 CT(HR-pQCT)图像的结构指数,以及骨矿物质密度(aBMD),并比较这些参数与体外骨强度的关系。对 31 例(8 例男性,23 例女性,中位年龄 74 岁,范围 50-89 岁)人股骨近端标本进行 HR-pQCT 检查,在四个感兴趣区(股骨头、颈、大转子和小转子)以 82μm 和亚组(n=17)以 41μm 分辨率进行检查。分别对皮质和小梁几何形状、体积骨密度(vBMD)和微结构参数进行分析。此外,采用双能 X 射线吸收法(DXA)在常规髋关节部位进行 aBMD 检测,并在侧向冲击生物力学试验中测定最大压缩强度(MCS)。确认了 12 例颈骨折和 19 例转子间骨折。几何形状、vBMD、微结构和 aBMD 与 MCS 显著相关,Spearman 相关系数高达 0.77、0.89、0.90 和 0.85(P<0.001)。与 82μm 分辨率相比,41μm 分辨率的这些相关性无差异。在 MCS 的多元回归分析中,与仅持 aBMD 的模型相比,年龄和性别调整的联合模型(aBMD 和结构参数)显著增加了 R(2)值(高达 0.90)(P<0.05)。结构参数和 aBMD 与 MCS 同样相关,HR-pQCT 图像中获得的皮质和小梁结构参数均提供了与 aBMD 互补的骨强度信息。