Cooper David M L, Thomas C David L, Clement John G, Hallgrímsson Benedikt
Department of Orthopaedics, Division of Orthopaedic Engineering Research, University of British Columbia, Vancouver, Canada.
Anat Rec A Discov Mol Cell Evol Biol. 2006 Jul;288(7):806-16. doi: 10.1002/ar.a.20344.
This study employed microcomputed tomography (micro-CT) as a novel means for visualizing the morphology and quantifying the range (length) of basic multicellular unit (BMU)-related resorption spaces in human cortical bone. We tested the hypotheses that the density and range of spaces vary with age and sex. The sample included 82 human (18-92 years) anterior femoral midshaft samples. The morphology of the spaces (n = 99) was varied, including unidirectional, bidirectional, branched, and even highly clustered forms. The density of resorption spaces was negatively correlated with age for the combined sexes and females, with Spearman's rho values of -0.355 (P < 0.001) and -0.522 (P = 0.002), respectively. The density of spaces did not differ significantly between the sexes (P = 0.735). Mean range +/- SD for the combined sexes, females, and males was 2,706 +/- 1,177, 2,681 +/- 1,247, and 2,718 +/- 1,150 microm, respectively. Numerical simulation of the effect of the 7,000 microm scan field of view suggested that the actual mean range of the spaces for the pooled sample was actually on the order of 3,770 microm. Range did not correlate significantly with age for the combined sexes (P = 0.587) or females (P = 0.345) and males (P = 0.896) considered separately and was not significantly different (P = 0.883) between the sexes. These results suggest that the range of BMUs is not affected by age. The age-dependent decrease in resorption space density for the females and pooled sexes was most likely a consequence of cortical rarefaction, leading to difficulty detecting resorption spaces with micro-CT, rather than a decrease in overall remodeling activity.
本研究采用微型计算机断层扫描(micro-CT)作为一种新方法,用于观察人类皮质骨中基本多细胞单元(BMU)相关吸收间隙的形态并量化其范围(长度)。我们检验了间隙密度和范围随年龄和性别变化的假设。样本包括82个来自人类股骨中轴前部的样本(年龄在18至92岁之间)。间隙(n = 99)的形态各异,包括单向、双向、分支状,甚至高度聚集的形式。吸收间隙密度在合并性别组和女性组中均与年龄呈负相关,Spearman等级相关系数分别为-0.355(P < 0.001)和-0.522(P = 0.002)。间隙密度在性别之间无显著差异(P = 0.735)。合并性别组、女性组和男性组的平均范围±标准差分别为2706±1177、2681±1247和2718±1150微米。对7000微米扫描视野效果的数值模拟表明,合并样本中间隙的实际平均范围实际上约为3770微米。分别考虑合并性别组(P = 0.587)、女性组(P = 0.345)和男性组(P = 0.896)时,范围与年龄无显著相关性,且性别之间也无显著差异(P = 0.883)。这些结果表明,BMU的范围不受年龄影响。女性组和合并性别组中吸收间隙密度随年龄的下降很可能是皮质稀疏的结果,导致难以用micro-CT检测到吸收间隙,而不是整体重塑活动的减少。