首页> 外文期刊>Journal of Biomechanics >Application of the digital volume correlation technique for the measurement of displacement and strain fields in bone: A literature review
【24h】

Application of the digital volume correlation technique for the measurement of displacement and strain fields in bone: A literature review

机译:数字体积相关技术在骨位移和应变场测量中的应用:文献综述

获取原文
获取原文并翻译 | 示例
           

摘要

Digital volume correlation (DVC) provides experimental measurements of displacements and strains throughout the interior of porous materials such as trabecular bone. It can provide full-field continuum-and tissue-level measurements, desirable for validation of finite element models, by comparing image volumes from subsequent muCT scans of a sample in unloaded and loaded states.Since the first application of DVC for measurement of strain in bone tissue, subsequent reports of its application to trabecular bone cores up to whole bones have appeared within the literature. An "optimal" set of procedures capable of precise and accurate measurements of strain, however, still remains unclear, and a systematic review focussing explicitly on the increasing number of DVC algorithms applied to bone or structurally similar materials is currently unavailable.This review investigates the effects of individual parameters reported within individual studies, allowing to make recommendations for suggesting algorithms capable of achieving high accuracy and precision in displacement and strain measurements. These recommendations suggest use of subsets that are sufficiently large to encompass unique datasets (e.g. subsets of 500 mum edge length when applied to human trabecular bone cores, such as cores 10 mm in height and 5 mm in diameter, scanned at 15 um voxel size), a shape function that uses full affine transformations (translation, rotation, normal strain and shear strain), the robust normalized cross-correlation coefficient objective function, and high-order interpolation schemes. As these employ computationally burdensome algorithms, researchers need to determine whether they have the necessary computational resources or time to adopt such strategies. As each algorithm is suitable for parallel programming however, the adoption of high precision techniques may become more prevalent in the future.
机译:数字体积相关(DVC)提供了整个多孔材料(如小梁骨)内部位移和应变的实验测量。通过比较样品在未加载和加载状态下的随后muCT扫描的图像体积,它可以提供全域连续体和组织水平的测量,这对于验证有限元模型非常有用。骨组织,随后将其应用于小梁骨核心直至整个骨骼的报道已出现在文献中。但是,仍然无法确定能够精确,准确地测量应变的“最佳”程序集,目前还没有系统的评估明确地关注越来越多的应用于骨骼或结构相似材料的DVC算法。个别研究中报告的各个参数的影响,从而可以为能够在位移和应变测量中实现高精度和高精度的算法提出建议。这些建议建议使用足够大的子集以包含独特的数据集(例如,当应用于人小梁骨核心时,边长为500毫米的子集,例如高度为10毫米,直径为5毫米的核心,以15 um体素尺寸扫描) ,使用完整仿射变换(平移,旋转,法向应变和剪切应变),稳健的归一化互相关系数目标函数和高阶插值方案的形状函数。由于这些算法使用了计算量大的算法,因此研究人员需要确定他们是否具有必要的计算资源或时间来采用此类策略。但是,由于每种算法都适用于并行编程,因此将来可能会更广泛地采用高精度技术。

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