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Study of Human Cortical Bone and Demineralized Human Cortical Bone Viscoelasticity

机译:人体皮质骨和软化人体皮质骨粘弹性的研究

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摘要

The knowledge of human bone viscoelasticity is an important issue for defining semirigid calcified tissues implants. A very sensitive technique was used to investigate bone viscoelasticity: the thermally stimulated creep method. A study of demineralized human bone was performed to determine the molecular origin of bone viscoelasticity. The thermally stimulated creep spectra of bone and demineralized bone, at the hydrated state, present a similar shape with one main retardation mode located at -133 and -120°C, respectively. This mode is shifted toward higher temperatures after dehydration, revealing the existence of another mode at around -155°C. The analysis of elementary spectra of bone and demineralized bone has shown that retar- dation times follow an Arrhenius equation, and that two compensation phenomena are observed with comparable compensation parameters. The first compensation phenom- enon, which corresponds to the main retardation mode, was attributed to motions of water molecules located inside the collagen triple helix. The second compensation phenomenon, which reveals the existence of another relaxation mode at higher tem- peratures, was assigned to movements of hydrophilic side chains bound to water molecules. As for the mode observed at around -155°C, it was associated with motions of aliphatic side chains. Overall, bone viscoelasticity originates from the organic matrix.
机译:人骨粘弹性知识是定义半刚性钙化组织植入物的重要问题。一种非常敏感的技术被用来研究骨粘弹性:热刺激蠕变法。进行了去矿质人骨的研究,以确定骨粘弹性的分子起源。在水合状态下,骨骼和软化骨骼的热刺激蠕变光谱呈现相似的形状,其中一种主要的延迟模式分别位于-133和-120°C。脱水后,该模式向更高的温度转变,表明在-155°C附近存在另一种模式。骨骼和软化骨骼的基本光谱分析表明,延迟时间遵循Arrhenius方程,并且在补偿参数相当的情况下观察到两种补偿现象。第一个补偿现象与主要的延迟模式相对应,归因于位于胶原三重螺旋内部的水分子的运动。第二种补偿现象揭示了在高温下存在另一种松弛模式,这种现象被归因于与水分子结合的亲水性侧链的运动。至于在-155℃附近观察到的模式,它与脂族侧链的运动有关。总体而言,骨粘弹性源自有机基质。

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