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Elastic Full-Field Strain Analysis and Microdamage Progression in the Vertebral Body from Digital Volume Correlation

机译:基于数字体积相关性的椎体弹性全场应变分析和微损伤过程

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摘要

The strain distribution in vertebral body has been measured in vitro in the elastic regime but only on the bone surface by means of strain gauges and digital image correlation. Digital volume correlation (DVC) based on micro-computed tomography (micro-CT) images allowed measurements of the internal strain distribution in bone at both tissue (trabecular and cortical bone) and organ (vertebra) levels. However, DVC has been mainly used to investigate failure of the vertebral body but has not yet been deployed to investigate the internal strain distribution in the elastic regime. The aim of this study was to investigate strain in the elastic regime and up to failure inside the vertebral body, including analysis of strain in all directions. Three porcine thoracic vertebrae were loaded in a step-wise fashion at increasing steps of compression (5, 10 and 15%). Micro-CT images were acquired at each step of compression. DVC successfully provided the internal strain distribution both in the elastic regime and up to failure. Micro-CT images successfully identified regions of failure initiation and progression, which were well quantified by DVC-computed strains. Interestingly, the same regions where failure eventually occurred experienced the largest strain magnitude also for the lowest degrees of compression (yet in the elastic regime).
机译:椎体中的应变分布已在体外以弹性状态进行了测量,但仅通过应变仪和数字图像相关性在骨骼表面进行了测量。基于微计算机断层扫描(micro-CT)图像的数字体积相关(DVC)允许测量组织(小梁和皮层骨)和器官(椎骨)水平的骨内部应变分布。但是,DVC主要用于研究椎体的破坏,但尚未用于研究弹性状态下的内部应变分布。这项研究的目的是研究弹性状态下的应变以及直至椎体内部的破坏,包括各个方向的应变分析。以递增的压缩步骤(5%,10%和15%)逐步加载三个猪胸椎骨。在压缩的每个步骤都获取Micro-CT图像。 DVC成功地提供了在弹性状态下直至破坏的内部应变分布。 Micro-CT图像成功地确定了故障发生和发展的区域,这些区域可以通过DVC计算的菌株很好地量化。有趣的是,最终发生故障的相同区域也经历了最大的应变幅度,同时压缩程度最低(但在弹性状态下)。

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