Department of Orthopedic Surgery, Nagasaki University Graduate School of Biomedical Sciences, Japan.
Department of Orthopedic Surgery, Nagasaki University Graduate School of Biomedical Sciences, Japan.
Bone. 2019 Mar;120:459-464. doi: 10.1016/j.bone.2018.12.005. Epub 2018 Dec 14.
A vertebral fracture is the most common complication of osteoporosis, and various factors are involved in its occurrence. The purpose of this study was to investigate the role of trabecular and cortical bone microstructure on vertebral strength using high-resolution peripheral quantitative computed tomography (HR-pQCT).
Three female cadaveric spines were investigated (average age: 80.3 years). The whole spine (T1-L4) was scanned by second-generation HR-pQCT at a voxel size of 60.7 μm. Bone microstructure analysis and micro finite element analysis were performed after excluding the upper and lower endplates and posterior elements of a total of 48 vertebrae. Correlations between trabecular and cortical bone microstructure parameters and estimated vertebral strength were analyzed by univariate and multivariate regression models.
Cortical thickness (Ct.Th) and trabecular thickness (Tb.Th) were strongly correlated with estimated failure load on univariate analysis (r = 0.89, 0.82). Trabecular volumetric bone mineral density (Tb.vBMD), bone volume fraction (BV/TV), trabecular number (Tb.N), and Ct.Th were correlated with estimated failure load on multivariate regression analysis.
It was suggested that, in addition to trabecular bone (Tb.vBMD, BV/TV, Tb.N), cortical bone (Ct.Th) contributed significantly to vertebral strength in elderly women.
椎体骨折是骨质疏松症最常见的并发症,其发生涉及多种因素。本研究旨在使用高分辨率外周定量 CT(HR-pQCT)研究骨小梁和皮质骨微观结构对椎体强度的作用。
对 3 具女性尸体脊柱(平均年龄:80.3 岁)进行研究。采用第二代 HR-pQCT 以 60.7μm 的体素大小对整个脊柱(T1-L4)进行扫描。在总共 48 个椎体中排除上下终板和后元素后,进行骨微观结构分析和微有限元分析。通过单变量和多变量回归模型分析骨小梁和皮质骨微观结构参数与估计的椎体强度之间的相关性。
在单变量分析中,皮质厚度(Ct.Th)和骨小梁厚度(Tb.Th)与估计的失效负荷呈强相关(r=0.89,0.82)。在多变量回归分析中,骨小梁体积骨密度(Tb.vBMD)、骨体积分数(BV/TV)、骨小梁数量(Tb.N)和 Ct.Th 与估计的失效负荷相关。
除了骨小梁(Tb.vBMD、BV/TV、Tb.N)外,皮质骨(Ct.Th)对老年女性的椎体强度也有重要贡献。