首页> 外文期刊>Journal of Biomechanics >Side-artifact errors in yield strength and elastic modulus for human trabecular bone and their dependence on bone volume fraction and anatomic site.
【24h】

Side-artifact errors in yield strength and elastic modulus for human trabecular bone and their dependence on bone volume fraction and anatomic site.

机译:人为小梁的屈服强度和弹性模量的伪影误差及其对骨骼体积分数和解剖部位的依赖性。

获取原文
获取原文并翻译 | 示例
           

摘要

In the context of reconciling the mechanical properties of trabecular bone measured from in vitro mechanical testing with the true in situ behavior, recent attention has focused on the "side-artifact" which results from interruption of the trabecular network along the sides of machined specimens. The objective of this study was to compare the magnitude of the side-artifact error for measurements of elastic modulus vs. yield stress and to determine the dependence of these errors on anatomic site and trabecular micro-architecture. Using a series of parametric variations on micro-CT-based finite element models of trabecular bone from the human vertebral body (n=24) and femoral neck (n=10), side-artifact correction factors were quantified as the ratio of the side-artifact-free apparent mechanical property to the corresponding property measured in a typical experiment. The mean (+/-SD) correction factors for yield stress were 1.32+/-0.17 vs. 1.20+/-0.11 for the vertebral body and femoral neck (p<0.05), respectively, and the corresponding factors for modulus were 1.24+/-0.09 vs. 1.10+/-0.04 (p<0.0001). Correction factors were greater for yield stress than modulus (p<0.003), but no anatomic site effect was detected (p>0.29) after accounting for variations in bone volume fraction (BV/TV). Approximately 30-55% of the variation in the correction factors for modulus and yield stress could be accounted for by BV/TV or micro-architecture, representing an appreciable systematic component of the error. Although some scatter in the correction factor-BV/TV relationships may confound accurate correction of modulus and yield stress for individual specimens, side-artifact correction is nonetheless essential for obtaining accurate mean estimates of modulus and yield stress for a cohort of specimens. We conclude that appreciation and correction for the differential effects of the side-artifact in modulus vs. yield stress and their dependence on BV/TV may improve the interpretation of measured elastic and failure properties for trabecular bone.
机译:在将通过体外机械测试测得的小梁骨的机械特性与真实的原位行为相协调的背景下,近来的注意力集中在“侧面伪像”上,该“伪像”是由于沿加工标本侧面的小梁网络的中断而产生的。这项研究的目的是比较用于测量弹性模量与屈服应力的侧面伪影误差的幅度,并确定这些误差对解剖部位和小梁微结构的依赖性。使用来自人椎体(n = 24)和股骨颈(n = 10)的小梁骨基于微CT的有限元模型的一系列参数变化,将侧面伪影校正因子量化为侧面的比例-无伪像的表观机械性能,相当于在典型实验中测得的相应性能。屈服应力的平均(+/- SD)校正因子为1.32 +/- 0.17,而椎体和股骨颈的校正因子分别为1.20 +/- 0.11(p <0.05),相应的模量因子为1.24+ /-0.09与1.10 +/- 0.04(p <0.0001)。屈服应力的校正因子大于模量(p <0.003),但考虑到骨体积分数(BV / TV)的变化后,未检测到解剖部位效应(p> 0.29)。 BV / TV或微体系结构可以解释模量和屈服应力校正因子变化的大约30-55%,这代表了误差的一个可观的系统组成部分。尽管校正因子-BV / TV关系中的某些散布可能会混淆单个样本的模量和屈服应力的准确校正,但是对于获得一组样本的模量和屈服应力的准确平均估计值,伪影校正仍然是必不可少的。我们得出结论,对侧模在屈服应力与屈服应力以及它们对BV / TV的依赖性方面的差异影响的欣赏和校正,可能会改善对小梁骨的弹性和破坏特性的测量结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号