首页> 外文期刊>Journal of Biomechanics >Micromechanical analyses of vertebral trabecular bone based on individual trabeculae segmentation of plates and rods.
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Micromechanical analyses of vertebral trabecular bone based on individual trabeculae segmentation of plates and rods.

机译:基于板和杆的单个小梁分割,对椎骨小梁骨进行微力学分析。

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Trabecular plates play an important role in determining elastic moduli of trabecular bone. However, the relative contribution of trabecular plates and rods to strength behavior is still not clear. In this study, individual trabeculae segmentation (ITS) and nonlinear finite element (FE) analyses were used to evaluate the roles of trabecular types and orientations in the failure initiation and progression in human vertebral trabecular bone. Fifteen human vertebral trabecular bone samples were imaged using micro computed tomography (microCT), and segmented using ITS into individual plates and rods by orientation (longitudinal, oblique, and transverse). Nonlinear FE analysis was conducted to perform a compression simulation for each sample up to 1% apparent strain. The apparent and relative trabecular number and tissue fraction of failed trabecular plates and rods were recorded during loading and data were stratified by trabecular orientation. More trabecular rods (both in number and tissue fraction) failed at the initiation of compression (0.1-0.2% apparent strain) while more plates failed around the apparent yield point (>0.7% apparent strain). A significant correlation between plate bone volume fraction (pBV/TV) and apparent yield strength was found (r(2)=0.85). From 0.3% to 1% apparent strain, significantly more longitudinal trabecular plate and transverse rod failed than other types of trabeculae. While failure initiates at rods and rods fail disproportionally to their number, plates contribute significantly to the apparent yield strength because of their larger number and tissue volume. The relative failed number and tissue fraction at apparent yield point indicate homogeneous local failure in plates and rods of different orientations.
机译:小梁板在确定小梁骨的弹性模量中起重要作用。但是,小梁板和杆对强度行为的相对贡献仍不清楚。在这项研究中,单个小梁分割(ITS)和非线性有限元(FE)分析被用来评估小梁类型和方向在人类椎骨小梁的失败开始和进展中的作用。使用微型计算机断层扫描(microCT)对15个人类椎骨小梁骨样品进行成像,并使用ITS按方向(纵向,倾斜和横向)将其分割成单独的板和杆。进行了非线性有限元分析,以对每个样品进行高达1%的表观应变的压缩模拟。在加载过程中记录失败的小梁板和杆的表观和相对小梁数以及组织分数,并通过小梁取向对数据进行分层。在压缩开始时,更多的小梁杆(数量和组织分数)均失败(表观应变为0.1-0.2%),而在表观屈服点附近(> 0.7%的表观应变),更多的骨小梁失败。发现板骨体积分数(pBV / TV)与表观屈服强度之间存在显着相关性(r(2)= 0.85)。从0.3%到1%的表观应变,与其他类型的小梁相比,纵向小梁板和横向杆的破坏明显更多。虽然失效始于杆,而杆的失效与其数量成比例地不成比例,但由于其数量和组织体积较大,板对表观屈服强度有显着贡献。在明显屈服点的相对失效数量和组织分数表明在不同方向的板和杆中均质的局部失效。

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