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Skeletal maturity leads to a reduction in the strain magnitudes induced within the bone: A murine tibia study

机译:骨骼成熟导致骨骼内诱发的应变幅度降低:一项小鼠胫骨研究

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Bone adapts to changes in the local mechanical environment (e.g. strains) through formation and resorption processes. However, the bone adaptation response is significantly reduced with increasing age. The mechanical strains induced within the bone by external loading are determined by bone morphology and tissue material properties. Although it is known that changes in bone mass, architecture and bone tissue quality occur with age, to what extent they contribute to the altered bone adaptation response remains to be determined. This study investigated alterations in strains induced in the tibia of different aged female C57BI/6J mice (young, 10-week-old; adult, 26-week-old; and elderly, 78-week-old) subjected to in vivo compressive loading. Using a combined in vivo/in silico approach, the strains in the bones were assessed by both strain gauging and finite element modeling experiments. In cortical bone, strain magnitudes induced at the mid-diaphysis decreased by 20% from young to adult mice and by 15% from adult to elderly mice. In the cancellous bone (at the proximal metaphysis), induced strains were 70% higher in young compared with adult and elderly mice. Taking into account previous studies showing a reduced bone adaptation response to mechanical loading in adulthood, these results suggest that the diminished adaptive response is in part due to a reduction in the strains induced within the bone. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:骨骼通过形成和吸收过程适应局部机械环境(例如应变)的变化。但是,随着年龄的增长,骨骼适应反应会显着降低。由外部载荷在骨骼内引起的机械应变由骨骼形态和组织材料特性决定。尽管已知随着年龄的增长骨量,结构和骨组织质量会发生变化,但是它们在多大程度上有助于改变骨适应性反应仍有待确定。这项研究调查了在体内压缩负荷下,不同年龄的雌性C57BI / 6J小鼠(年轻,10周龄;成年,26周龄;和老年人,78周龄)在胫骨中诱发的品系变化。 。使用体内/计算机相结合的方法,通过应变测量和有限元建模实验来评估骨骼中的应变。在皮质骨中,在中骨干处诱发的应变幅度从幼年到成年小鼠降低了20%,从成年到老年小鼠降低了15%。在松质骨中(在近端干meta端),与成年和成年小鼠相比,幼年诱导的品系高出70%。考虑到以前的研究表明成年后对机械负荷的骨骼适应反应降低,这些结果表明适应性反应减弱的部分原因是骨骼内诱导的应变降低。 (C)2014 Acta Materialia Inc.,由Elsevier Ltd.发行。保留所有权利。

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