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首页> 外文期刊>Journal of Biomechanics >Microstructure and nanomechanical properties in osteons relate to tissue and animal age.
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Microstructure and nanomechanical properties in osteons relate to tissue and animal age.

机译:骨中的微结构和纳米力学性质与组织和动物的年龄有关。

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Material property changes in bone tissue with ageing are a crucial missing component in our ability to understand and predict age-related fracture. Cortical bone osteons contain a natural gradient in tissue age, providing an ideal location to examine these effects. This study utilized osteons from baboons aged 0-32 years (n=12 females), representing the baboon lifespan, to examine effects of tissue and animal age on mechanical properties and composition of the material. Tissue mechanical properties (indentation modulus and hardness), composition (mineral-to-matrix ratio, carbonate substitution, and crystallinity), and aligned collagen content (aligned collagen peak height ratio) were sampled along three radial lines in three osteons per sample by nanoindentation, Raman spectroscopy, and second harmonic generation microscopy, respectively. Indentation modulus, hardness, mineral-to-matrix ratio, carbonate substitution, and aligned collagen peak height ratio followed biphasic relationships with animal age, increasing sharply during rapid growth before leveling off at sexual maturity. Mineral-to-matrix ratio and carbonate substitution increased 12% and 6.7%, respectively, per year across young animals during growth, corresponding with a nearly 7% increase in stiffness and hardness. Carbonate substitution and aligned collagen peak height ratio both increased with tissue age, increasing 6-12% across the osteon radii. Indentation modulus most strongly correlated with mineral-to-matrix ratio, which explained 78% of the variation in indentation modulus. Overall, the measured compositional and mechanical parameters were the lowest in tissue of the youngest animals. These results demonstrate that composition and mechanical function are closely related and influenced by tissue and animal age.
机译:随着年龄的增长,骨骼组织中的物质特性变化是我们理解和预测与年龄相关的骨折的能力中至关重要的缺失要素。皮质骨骨质在组织年龄中包含自然梯度,是检查这些效应的理想位置。这项研究利用了代表狒狒寿命的0-32岁(n = 12雌性)狒狒的骨质,来研究组织和动物年龄对材料的机械性能和成分的影响。通过纳米压痕,沿每个样品三个骨质中的三个径向线对组织力学性能(压痕模量和硬度),组成(矿物质与基质的比率,碳酸盐取代度和结晶度)和对齐的胶原含量(对齐的胶原峰高比)进行采样。 ,拉曼光谱和二次谐波显微镜。压痕模量,硬度,矿物质与基质的比率,碳酸盐替代和对齐的胶原蛋白峰高比与动物年龄呈两相关系,在快速生长期间急剧增加,在性成熟前趋于平稳。在成长过程中,年幼动物的矿物质与基质的比率和碳酸盐替代分别每年增加12%和6.7%,相应地,刚度和硬度增加了近7%。碳酸盐替代和对齐的胶原蛋白峰高比均随组织年龄的增加而增加,在整个骨半径范围内增加6-12%。压痕模量与矿物质与基质的比率最密切相关,这解释了压痕模量变化的78%。总体而言,测得的成分和机械参数在最年轻的动物的组织中最低。这些结果表明,组成和机械功能密切相关,并受组织和动物年龄的影响。

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