首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Modal analysis of nanoindentation data, confirming that reduced bone turnover may cause increased tissue mineralization/elasticity
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Modal analysis of nanoindentation data, confirming that reduced bone turnover may cause increased tissue mineralization/elasticity

机译:纳米压延数据的模态分析,证实降低的骨质周转可能会增加组织矿化/弹性

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摘要

It is widely believed that the activities of bone cells at the tissue scale not only govern the size of the vascular pore spaces (and hence, the amount of bone tissue available for actually carrying the loads), but also the characteristics of the extracellular bone matrix itself. In this context, increased mechanical stimulation (in mediolateral regions of human femora, as compared to anteroposterior regions) may lead to increased bone turnover, lower bone matrix mineralization, and therefore lower tissue modulus. On the other hand, resorption-only processes (in endosteal versus periosteal regions) may have the opposite effect. A modal analysis of nanoindentation data obtained on femurs from the Melbourne Femur Research Collection (MFRC) indeed confirms that bone is stiffer in endosteal regions compared to periosteal regions ((E) over bar (endost) = 29.34 +/- 0.75 GPa (E) over bar (periost) = 24.67 +/- 1.63 GPa), most likely due to the aging-related increase in resorption modeling on endosteal surfaces resulting in trabecularization of cortical bone. The results also show that bone is stiffer along the anteroposterior direction compared the mediolateral direction ((E ) over bar (anteropost) = 28.89 +/- 1.08 GPa (E) over bar (mediolat) = 26.03 +/- 2.31 GPa), the former being aligned with the neutral bending axis of the femur and, thus, undergoing more resorption modeling and consequently being more mineralized.
机译:人们普遍认为,组织规模的骨细胞的活动不仅可以控制血管孔隙空间的大小(并且因此,用于实际携带负载的骨组织量),而且是细胞外骨基质的特征本身。在这种情况下,增加机械刺激(与前后区域相比,人股骨悚然的中等地区)可能导致骨质周转增加,骨基质矿化,因此降低组织模量。另一方面,仅吸收过程(在内皮病与骨膜区域中)可能具有相反的效果。从墨尔本股骨研究收集(MFRC)上的股骨上获得的纳米狭窄数据的模态分析确实证实,与骨膜区域((e)过度(endost)= 29.34 +/- 0.75 gpa&( e)在酒吧(PERIOST)= 24.67 +/- 1.63 GPA),很可能是由于肢体表面上的吸收模拟中的衰老相关增加导致皮质骨的术。结果还表明,与前后方向相比,骨骼沿着前后方向更硬((e)在酒吧(anteropost)= 28.89 +/- 1.08 gpa&(e)在酒吧(mediolat)= 26.03 +/- 2.31 gpa) ,前者与股骨的中性弯曲轴对齐,因此经历更多的吸收性建模并因此更加矿化。

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