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Investigation of ultrastructural and mechanical properties of rat cortical bone using micro-CT, three-point bending testing, and the reference point indentation technique

机译:微CT,三点弯曲试验和参考点压痕技术研究大鼠皮质骨的超微结构和力学性能

摘要

Characterization of bone is important as it aids in the understanding of bone pathologies and their corresponding treatments. Assessment of cortical bone morphology has been identified as an important aspect of overall bone quality as it contributes significantly to the mechanical strength of bone. In the first part of this study, rat cortical bone was assessed at different hierarchical levels using micro-CT imaging, and changes within the cortical network morphology as a function of age were investigated. Decomposition of the intracortical porosity of the rat into the canal network and the osteocyte lacunar system allowed for the quantification of morphometric indices describing the size, shape, and spatial orientation of these systems. The porosity due to canals decreases with age while the porosity due to lacunae decreases slightly with age. Overall, it was found that the lacunae element-based parameters were independent of age. The results of this study serve as valuable inputs into the computational modeling of bone at different hierarchical scales and will help provide new insights into the assessment of bone quality in the future.In addition to micro-CT imaging, the mechanical properties of rat cortical bone as a function of age were assessed with three-point bending testing. Additionally, a novel microindentation technique, termed reference point indentation (RPI),that is capable of in vivo testing was used to assess the mechanical properties of rat bone. These results were compared to traditional bending test results for validation of this new RPI technique. Parameters including apparent modulus, stiffness, mean energy dissipation, and ultimate bending strength were reported. Furthermore, a parameter unique to the RPI technique, the indentation distance increase (IDI), was introduced and used to investigate the fracture properties of bone as a function of age. It was concluded that the RPI technique is capable of providing information regarding bone fracture toughness as well as other parameters, and these parameters were similar to those obtained using traditional three-point bending tests. Although these results are promising, a more thorough comparison of the RPI technique with traditional mechanical testing is warranted to provide a better understanding of the relationship between these testing methods.
机译:骨骼的表征非常重要,因为它有助于理解骨骼的病理状况及其相应的治疗方法。评估皮质骨形态是整体骨质的重要方面,因为它对骨骼的机械强度有重要贡献。在本研究的第一部分中,使用micro-CT成像在不同层次上评估大鼠皮质骨,并研究了皮质网络形态随年龄的变化。大鼠皮层内孔隙度分解成管网和骨细胞腔系统允许定量描述这些系统的大小,形状和空间方向的形态计量指标。运河造成的孔隙度随年龄而下降,而凹陷造成的孔隙度随年龄而略有下降。总体而言,发现基于腔隙元素的参数与年龄无关。这项研究的结果为不同层次的骨计算模型提供了有价值的输入,并将有助于为将来的骨质量评估提供新的见识。三点弯曲测试评估了年龄的变化。此外,一种能够进行体内测试的称为参考点压痕(RPI)的新型微压痕技术被用于评估大鼠骨骼的机械性能。将这些结果与传统弯曲测试结果进行比较,以验证这种新的RPI技术。报告了包括表观模量,刚度,平均能量耗散和极限弯曲强度在内的参数。此外,引入了RPI技术独有的参数,即压痕距离增加(IDI),并将其用于研究随年龄变化的骨骼的骨折特性。结论是,RPI技术能够提供有关骨折韧性以及其他参数的信息,并且这些参数与使用传统三点弯曲测试获得的参数相似。尽管这些结果令人鼓舞,但仍需要将RPI技术与传统的机械测试进行更彻底的比较,以更好地了解这些测试方法之间的关系。

著录项

  • 作者

    Jast John A.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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