Orientation effect and locational variation in elastic-plastic compressive properties of bovine cortical bone.

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Sachin Kalsi, Jagjit Singh, Karan Vir Saini, Nitin Kumar Sharma
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引用次数: 0

Abstract

Bone is a highly heterogeneous and anisotropic material with a hierarchical structure. The effect of diaphysis locations and directions of loading on elastic-plastic compressive properties of bovine femoral cortical bone was examined in this study. The impact of location and loading directions on elastic-plastic compressive properties of cortical bone was found to be statistically insignificant in this study. The variances of most of the compressive properties were also observed to be location and directionality independent except for the locational differences in modulus of resilience (distal to central for longitudinal loading) and plastic work (central to distal for transverse loading) as well as differences in variances of the modulus of resilience and elastic modulus values for two directions of loading. The micro-mechanisms of cortical bone failure for longitudinal and transverse directions of loading were considered to be responsible for the difference in variances in the later properties values as well as for the maximum and minimum coefficient of variation (CV) obtained for compressive properties in two directions of loading. The representative cubical volume at the tested hierarchical level contained all unique microstructural features of the plexiform bone and therefore produced the homogeneous and isotropic elastic-plastic compressive properties of cortical bone. It is expected that the outcome of this study may be helpful in the area of bone tissue engineering and finite element simulation of cortical bone.

牛皮质骨弹塑性压缩特性的取向效应和位置变化。
骨是一种具有层次结构的高度非均质和各向异性的材料。本文研究了骨干位置和加载方向对牛股皮质骨弹塑性压缩性能的影响。本研究发现位置和加载方向对皮质骨弹塑性压缩性能的影响在统计学上不显著。除了弹性模量(纵向加载时从远端到中心)和塑性工作(横向加载时从中心到远端)的位置差异以及两个方向加载时弹性模量和弹性模量值的差异之外,大多数压缩特性的差异也被观察到与位置和方向无关。纵向和横向加载的皮质骨破坏的微观机制被认为是导致后期特性值差异的原因,也是两个方向加载的压缩特性获得的最大和最小变异系数(CV)的原因。在测试层次水平上的代表性立方体体积包含了丛状骨的所有独特的微观结构特征,因此产生了皮质骨的均匀性和各向同性弹塑性压缩特性。期望本研究结果对骨组织工程和皮质骨有限元模拟领域有所帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
122
审稿时长
6 months
期刊介绍: The Journal of Engineering in Medicine is an interdisciplinary journal encompassing all aspects of engineering in medicine. The Journal is a vital tool for maintaining an understanding of the newest techniques and research in medical engineering.
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