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Elasticity and Viscoelasticity of Human Tibial Cortical Bone Measured by Nanoindentation

机译:纳米肾脏测量人群皮质骨的弹性和粘弹性

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Bone is a composite material composed of collagen,carbonated apatite mineral,water,and other non-collagenous proteins.The bone structure inside human body is under constant remodelling.The mechanical properties of bone and their dynamic changes during remodelling are crucial to the health and quality of life.In this study,the elastic and viscoelastic properties of a 73 year-old female cortical bone were investigated at the lamellar level.This was realized by a nanoindentation technique equipped with dynamic loading function.325 indentations were made in individual Haversian systems and interstitial bone at both dry and wet condition,and under two different loading frequencies.The results showed no statistically significant differences in elastic modulus between Haversian systems and interstitial bone.There were no systematic differences in modulus across the cortex except for a slight drop at the periostea! site.The lamellar structure of both Haversian system and interstitial bone is viscoelastic with water playing a significant role to the properties.When dry bone is re-hydrated,elastic modulus decreases and loss tangent increases.
机译:骨是一种由胶原蛋白,碳酸化磷灰石矿物质,水和其他非胶原蛋白组成的复合材料。人体内部的骨骼结构处于恒定的重塑。重塑期间骨骼的力学性质及其动态变化对健康至关重要生活质量。在本研究中,在层状水平上研究了73岁的雌性皮质骨的弹性和粘弹性。这是通过配备动态装载功能的纳米凸化技术实现.325在个别毛边系统中进行压痕在干燥和潮湿的情况下,在两种不同的装载频率下,结果表明,哈尔斯系统和间质骨之间的弹性模量没有统计学上显着差异。除了略微下降之外,皮质模量没有系统差异。除了略微下降periostea!遗址。哈尔斯族系统和间质骨的层状结构是粘弹性,水对性质发挥着重要作用。当干骨重新水合时,弹性模量减少,切线损失增加。

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