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首页> 外文期刊>Journal of Biomechanics >Understanding site-specific residual strain and architecture in bovine cortical bone.
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Understanding site-specific residual strain and architecture in bovine cortical bone.

机译:了解特定位置的残余应变和牛皮质骨的结构。

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摘要

Living bone is considered as adaptive material to the mechanical functions, which continually undergoes change in its histological arrangement with respect to external prolonged loading. Such remodeling phenomena within bone depend on the degree of stimuli caused by the mechanical loading being experienced, and therefore, are specific to the sites. In the attempts of understanding strain adaptive phenomena within bones, different theoretical models have been proposed. Also, the existing literatures mostly follow the measurement of surface strains using strain gauges to experimentally quantify the strains experienced in the functional environment. In this work, we propose a novel idea of understanding site-specific functional adaptation to the prolonged load in bone on the basis of inherited residual strains and structural organization. We quantified the residual strains and amount of apatite crystals distribution, i.e., the degree of orientation, using X-ray diffraction procedures. The sites of naturally existing hole in bone, called foramen, are considered from bovine femur and metacarpal samples. Significant values of residual strains are found to exist in the specimens. Trends of residual strains noted in the specimens are mostly consistent with the degree of orientation of the crystallites. These features explain the response behavior of bone to the mechanical loading history near the foramen sites. Preferential orientation of crystals mapped around a femoral foramen specimen showed furnished tailored arrangement of the crystals around the hole. Effect of external loading at the femoral foramen site is also explained by the tensile loading experiment.
机译:活骨被认为是机械功能的适应性材料,其相对于外部长时间负荷而言,其组织学结构不断发生变化。骨骼中的这种重塑现象取决于所经历的机械负荷所引起的刺激程度,因此,特定于部位。为了理解骨骼中的应变适应现象,已经提出了不同的理论模型。同样,现有文献大多遵循使用应变仪对表面应变进行测量,以对在功能环境中经历的应变进行实验量化。在这项工作中,我们提出了一个新的想法,即在继承的残余应变和结构组织的基础上,了解特定部位的功能适应长时间的骨骼负荷。我们使用X射线衍射程序量化了残余应变和磷灰石晶体分布的数量,即取向度。从牛股骨和掌骨样本中考虑了骨骼中天然存在的孔(称为孔)的位置。发现样品中存在明显的残余应变值。样品中记录的残余应变趋势与微晶的取向程度基本一致。这些特征解释了骨对孔部位附近机械负荷历史的反应行为。围绕股骨孔样本定位的晶体的优先取向显示孔周围的晶体经过精心设计。股骨孔部位的外部负荷影响也可以通过拉伸负荷实验来解释。

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