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描述人类胫骨小梁骨的微观结构和机械性能的变异性和区域相关性:一项体内高分辨率 pQCT 研究。

Characterising variability and regional correlations of microstructure and mechanical competence of human tibial trabecular bone: An in-vivo HR-pQCT study.

机构信息

Wolfson School of Mechanical, Electrical and Manufacturing Engineering, Loughborough University, Leicestershire, UK.

School of Sport, Exercise and Health Science, Loughborough University, Leicestershire, UK.

出版信息

Bone. 2019 Apr;121:139-148. doi: 10.1016/j.bone.2019.01.013. Epub 2019 Jan 15.

Abstract

OBJECTIVE

Quantifying spatial distribution of trabecular bone mechanical competence and microstructure is important for early diagnosis of skeletal disorders and potential risk of fracture. The objective of this study was to determine a spatial distribution of trabecular mechanical and morphological properties in human distal tibia and examine the contribution of regional variability of trabecular microarchitecture to mechanical competence.

METHODS

A total of 340 representative volume elements at five anatomic regions of trabecular bone - anterior, posterior, lateral, medial and centre - from ten white European-origin postmenopausal women were studied. Region-specific trabecular parameters such as trabecular volume fraction, trabecular thickness, trabecular number, trabecular surface area, trabecular separation, plate-like structure fraction and finite element analysis of trabecular stiffness were determined based on in-vivo high resolution peripheral quantitative computed tomographic (HR-pQCT) images of distal tibiae from ten postmenopausal women. Mean values were compared using analysis of variance. The correlations between morphological parameters and stiffness were calculated.

RESULTS

Significant regional variation in trabecular microarchitecture of the human distal tibia was observed (p < 0.05), with up to 106% differences between lowest (central and anterior) and highest (medial and posterior) regions. Higher proportion of plate-like trabecular morphology (63% and 53%) was found in medial and posterior regions in the distal tibia. Stiffness estimated from finite element models also differed significantly (p < 0.05), with stiffness being 4.5 times higher in the highest (medial) than lowest (central) regions. The bone volume fraction was the strongest correlate of stiffness in all regions.

CONCLUSION

A novel finding of this study is the fact that significant regional variation of stiffness derived from two-phased FEA model with individual trabecula representation correlated highly to regional morphology obtained from in-vivo HR-pQCT images at the distal tibia. The correlations between regional morphological parameters and mechanical competence of trabecular bone were consistent at all regions studied, with regional BV/TV showing the highest correlation. The method developed for regional analysis of trabecular mechanical competence may offer a better insight into the relationship between mechanical behaviour and microstructure of bone. The findings provide evidence needed to further justify a larger-cohort feasibility study for early detection of bone degenerative diseases: examining regional variations in mechanical competence and trabecular specifications may allow better understanding of fracture risks in addition to others contributing factors.

摘要

目的

定量分析小梁骨机械性能和微观结构的空间分布对于早期诊断骨骼疾病和潜在骨折风险非常重要。本研究的目的是确定人类胫骨远端小梁骨的机械和形态特性的空间分布,并探讨小梁微观结构的区域性变化对机械性能的贡献。

方法

对来自 10 名白种欧洲裔绝经后女性的 5 个解剖区域(前、后、外、内和中心)的 340 个代表性体积元素进行了研究。基于 10 名绝经后女性胫骨远端的体内高分辨率外周定量 CT(HR-pQCT)图像,确定了特定区域的小梁参数,如小梁体积分数、小梁厚度、小梁数量、小梁表面积、小梁分离度、板状结构分数和小梁刚度的有限元分析。使用方差分析比较平均值,计算形态参数与刚度之间的相关性。

结果

观察到人类胫骨远端小梁微观结构存在显著的区域性差异(p<0.05),最低(中央和前)和最高(内和后)区域之间的差异高达 106%。胫骨远端的内、后区域中,板状小梁形态的比例较高(分别为 63%和 53%)。有限元模型估计的刚度也有显著差异(p<0.05),最高(内)区域的刚度是最低(中央)区域的 4.5 倍。骨体积分数是所有区域中与刚度相关性最强的参数。

结论

本研究的一个新发现是,从具有个体小梁表示的两相 FEA 模型中得出的刚度的显著区域变化与在胫骨远端获得的体内 HR-pQCT 图像的区域形态高度相关。在所有研究区域中,区域形态参数与小梁骨机械性能之间的相关性一致,区域 BV/TV 显示出最高的相关性。为小梁机械性能的区域分析而开发的方法可以更好地了解骨的机械行为与微观结构之间的关系。研究结果为进一步证明针对骨退行性疾病早期检测的更大队列可行性研究提供了证据:检查机械性能和小梁规格的区域性变化可能除了其他影响因素外,还可以更好地理解骨折风险。

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