DXA Unit, Carnegie Research Institute, Leeds Metropolitan University, Headingley Campus, Leeds, UK.
J Clin Densitom. 2012 Jul-Sep;15(3):302-7. doi: 10.1016/j.jocd.2011.12.004. Epub 2012 Mar 7.
Precision is integral to the monitoring of bone mineral density (BMD) change using dual-energy X-ray absorptiometry (DXA). Hip structural analysis (HSA) is a relatively recent method of assessing cross-sectional geometrical strength from the 2-dimensional images produced by DXA scans. By performing serial scans, we evaluated the in vivo precision of DXA-derived HSA in adults using a GE Lunar iDXA absorptiometer (GE Medical Systems, Madison, WI) in males and females (n=42), mean age of 34.5 (standard deviation [SD]: 8.5; range: 19.3-52.6)yr with a heterogeneous sample. Two consecutive intelligent DXA (iDXA) scans with repositioning of both femurs were conducted for each participant. The coefficient of variation, root-mean-square (RMS) averages of SD, and hence the least significant change (95%) were calculated. We found a high level of precision for BMD measurements of both the total hip and femoral neck, with RMS-SD=0.006 and 0.010 g/cm(2) and percent coefficient of variation (%CV)=0.52% and 0.94%, respectively. We also found good precision for HSA-derived geometrical properties, including sectional modulus, cross-sectional moment of inertia, and cross-sectional area, with %CV (average of the left and right sides) at 4.48%, 3.78%, and 3.13%, respectively. Precision was poorer for buckling ratio and femoral strength index with %CV 28.5% and 9.25%, respectively. The iDXA provides high precision for BMD measurements and with varying levels of precision for HSA geometrical properties.
使用双能 X 射线吸收法 (DXA) 监测骨密度 (BMD) 变化时,精度是不可或缺的。髋关节结构分析 (HSA) 是一种相对较新的方法,可通过 DXA 扫描生成的二维图像评估横截面几何强度。通过进行连续扫描,我们使用 GE Lunar iDXA 吸收仪 (GE Medical Systems,Madison,WI) 在男性和女性(n=42)中评估了 DXA 衍生 HSA 的体内精度,平均年龄为 34.5(标准差 [SD]:8.5;范围:19.3-52.6)岁,样本具有异质性。每位参与者都进行了两次连续的智能 DXA (iDXA) 扫描,并重新定位了双侧股骨。计算了变异系数、均方根 (RMS) 标准差平均值和最小显著变化 (95%)。我们发现总髋部和股骨颈 BMD 测量具有较高的精度,RMS-SD 分别为 0.006 和 0.010 g/cm(2),变异系数 (%) 分别为 0.52%和 0.94%。我们还发现 HSA 衍生的几何特性具有良好的精度,包括截面模数、截面惯性矩和截面面积,左右两侧的变异系数 (CV) 分别为 4.48%、3.78%和 3.13%。对于屈曲比和股骨强度指数,精度较差,变异系数分别为 28.5%和 9.25%。iDXA 为 BMD 测量提供了高精度,并为 HSA 几何特性提供了不同水平的精度。