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首页> 外文期刊>Journal of Microscopy >Accumulation of in-vivo fatigue microdamage and its relation to biomechanical properties in ageing human cortical bone
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Accumulation of in-vivo fatigue microdamage and its relation to biomechanical properties in ageing human cortical bone

机译:衰老人类皮质骨体内疲劳微损伤的累积及其与生物力学性能的关系

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摘要

Bone matrix accumulates microdamage in the form of microcracks as a result of everyday cyclic loading activities. In two very recent studies, which used conventional histological stains and light microscopy techniques, the amount of this in-vivo microdamage in the cortices of long bones has been shown to increase with age. These articles have suggested that in-vivo microcracks may have an effect on the material properties of the tissue. However, a precise quantitative relationship between the number of microcracks and the mechanical properties of these same bones has not been produced before, and in particular the way the microcracks may affect the stiffness, the strength or possibly the toughness of the tissue. This article presents an examination of the in-vivo microdamage in human bones by the use of laser scanning confocal microscopy, which offers better discrimination and allows examination of the cracks in-situ. Quantification of in-vivo fatigue microcracks was performed by counting the microcrack numerical density and surface density in specimens for which we have previously derived a full set of mechanical properties as a function of age. It is shown that bone microdamage relates more to the toughness (measured by three different measures) of ageing bone tissue than to its stiffness and strength. The result allows us (i) to re-evaluate the fragility of ageing human bone and put more emphasis on its energy-related resistance to fracture than perhaps on its stiffness or strength and also (ii) to understand more fully the causal relationship and interactions between microcracks and tissue toughness. [References: 26]
机译:由于每天的循环载荷活动,骨基质以微裂纹的形式累积微损伤。在两项使用常规组织学染色和光学显微镜技术的最新研究中,长骨皮质中的这种体内微损伤的量已显示随着年龄的增长而增加。这些文章表明,体内微裂纹可能会对组织的材料特性产生影响。然而,之前尚未产生微裂纹的数量与这些相同骨骼的机械性能之间的精确定量关系,尤其是微裂纹可能影响组织的刚度,强度或可能的韧性的方式。本文介绍了通过使用激光扫描共聚焦显微镜对人体骨骼的体内微损伤进行的检查,该技术可提供更好的辨别力并允许就地检查裂缝。通过计算样本中的微裂纹数值密度和表面密度来对体内疲劳微裂纹进行量化,我们先前已经针对这些微裂纹数值密度和表面密度得出了随年龄变化的全套机械性能。结果表明,骨微损伤更多地与老化的骨组织的韧性(通过三种不同的测量方法)有关,而不是其刚度和强度。结果使我们(i)重新评估衰老的人类骨骼的脆弱性,并更加注重其与能量相关的抗骨折能力,而不是其刚度或强度,并且(ii)更充分地了解其因果关系和相互作用在微裂纹和组织韧性之间。 [参考:26]

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