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High-Speed Photography of Human Trabecular Bone during Compression

机译:压缩期间人体小梁骨的高速摄影

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The mechanical properties of healthy and diseased bone tissue are extensively studied in mechanical tests. Most of this research is motivated by the immense costs of health care and social impacts due to osteoporosis in post-menopausal women and the aged. Osteoporosis results in bone loss and change of trabecular architecture, causing a decrease in bone strength. To address the problem of assessing local failure behavior of bone, we combined mechanical compression testing of trabecular bone samples with high-speed photography. In this exploratory study, we investigated healthy, osteoarthritic, and osteoporotic human vertebral trabecular bone compressed at high strain rates simulating conditions experienced in individuals during falls. Apparent strains were found to translate to a broad range of local strains. Moreover, strained trabeculae were seen to whiten with increasing strain. We hypothesize that the effect seen is due to microcrack formation in these areas, similar to stress whitening seen in synthetic polymers. From the results of a motion energy filter applied to the recorded movies, we saw that the whitened areas are, presumably, also of high deformation. We believe that this method will allow further insights into bone failure mechanisms, and help toward a better understanding of the processes involved in bone failure.
机译:健康和患病的骨组织的机械性能在力学测试中得到了广泛的研究。绝大部分妇女是由绝经后妇女和老年人因骨质疏松症而产生的巨额卫生保健费用和社会影响而发起这项研究的。骨质疏松症导致骨质流失和小梁结构改变,从而导致骨强度降低。为了解决评估骨骼局部失效行为的问题,我们将小梁骨样本的机械压缩测试与高速摄影相结合。在这项探索性研究中,我们研究了健康,骨关节炎和骨质疏松的人椎小梁骨,它们在高应变率下模拟了个体跌倒时的情况。发现表观菌株可转化为广泛的局部菌株。此外,观察到应变的小梁随着应变的增加而变白。我们假设看到的效果是由于在这些区域形成了微裂纹,类似于合成聚合物中出现的应力变白。从应用于记录的电影的运动能量过滤器的结果,我们发现发白的区域大概也具有很高的变形。我们相信,这种方法将使人们对骨衰竭的机制有更深入的了解,并有助于更好地了解与骨衰竭有关的过程。

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