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在微压痕过程中,骨质疏松性小梁骨的测量力学性能随变形量的增加而下降。

The measured mechanical properties of osteoporotic trabecular bone decline with the increment of deformation volume during micro-indentation.

作者信息

Jin Yongqiang, Zhang Teng, Lui Yuk Fai, Sze Kam Yim, Lu William Weijia

机构信息

Department of Orthopaedics and Traumatology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, China.

Department of Mechanical Engineering, Faculty of Engineering, The University of Hong Kong, Hong Kong, China.

出版信息

J Mech Behav Biomed Mater. 2020 Mar;103:103546. doi: 10.1016/j.jmbbm.2019.103546. Epub 2019 Nov 19.

Abstract

PURPOSE

Osteoporosis is a critical global health issue. However, the biomechanical properties of osteoporotic trabecular bone have not been well understood due to its hierarchically complex structure mingled with accumulated microcracks. Previous studies indicated the mechanical behaviors of trabecular bone may differ with varying amounts of deformation. Therefore, this study aims to further reveal the relationship between the measured mechanical properties of osteoporotic trabecular bone and various amounts of deformation volume during micro-indentation.

METHODS

Two trabecular specimens were dissected transversally and frontally from an osteoporotic lumbar vertebral (L5) cadaver and embedded into Methyl methacrylate. On each specimen, two orthogonal cuts were performed to make a right-angle, followed by five parallel slicing. On each slice, the region of interest was gridded into 16 (4 × 4) sub-regions with the size equal to the microscope field. Within each sub-region, indentations were made on a single trabecula with five different indentation depths (3, 4, 5, 6, 7 μm) to induce different deformation volume. Both the indentation hardness and modulus were computed from the indenting curve for each measurement. The results of the five slices are pooled together to represent the longitudinal and circumferential mechanical characteristics, respectively. Linear regression was performed to investigate the relationship between the measured mechanical properties and various deformation volumes.

RESULTS

A total of 1055 indents were made. After eliminating outliers, 840 indents were left for data analysis with 490 indents from transversal slices and 350 indents from frontal slices. Both the hardness and modulus decreased with the increasement of indentation depths. The hardness decreased by slopes of -0.65 (R = 0.72, p = 0.044) and -0.869 (R = 0.95, p = 0.003) longitudinally and circumferentially while the modulus decreased by slopes of -0.39 (R = 0.82, p = 0.02) and -0.348 (R = 0.94, p = 0.004) longitudinally and circumferentially.

CONCLUSIONS

Mechanical properties of trabecular bone measured by micro-indentation can alter with the variation of deformation volume, which reflects the nonlinear behavior of vertebra from the material perspective.

摘要

目的

骨质疏松是一个关键的全球健康问题。然而,由于骨质疏松性小梁骨的层次结构复杂且伴有累积微裂纹,其生物力学特性尚未得到很好的理解。先前的研究表明,小梁骨的力学行为可能会因变形量的不同而有所差异。因此,本研究旨在进一步揭示骨质疏松性小梁骨的测量力学性能与微压痕过程中不同变形量之间的关系。

方法

从一具骨质疏松性腰椎(L5)尸体上横向和正面切取两块小梁骨标本,并嵌入甲基丙烯酸甲酯中。在每个标本上,进行两次正交切割以形成直角,然后进行五次平行切片。在每片切片上,将感兴趣区域划分为16个(4×4)子区域,其大小与显微镜视野相等。在每个子区域内,在单个小梁上进行五次不同压痕深度(3、4、5、6、7μm)的压痕,以诱导不同的变形量。根据每次测量的压痕曲线计算压痕硬度和模量。将五片切片的结果汇总在一起,分别代表纵向和周向的力学特性。进行线性回归以研究测量的力学性能与各种变形量之间的关系。

结果

共进行了1055次压痕。剔除异常值后,留下840次压痕用于数据分析,其中横向切片490次压痕,正面切片350次压痕。硬度和模量均随压痕深度的增加而降低。纵向和周向硬度分别以-0.65(R = 0.72,p = 0.044)和-0.869(R = 0.95,p = 0.003)的斜率下降,而纵向和周向模量分别以-0.39(R = 0.82,p = 0.02)和-0.348(R = 0.94,p = 0.004)的斜率下降。

结论

通过微压痕测量的小梁骨力学性能会随变形量的变化而改变,这从材料角度反映了椎体的非线性行为。

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