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Elastic Modulus and Mineral Density of Dentine and Enamel in Natural Caries Lesions

机译:天然龋病病变中牙本质和牙釉质的弹性模量和矿物质密度

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Dental tissues have been reported to show a considerable decrease in both their mineral content and mechanical properties in carious lesions.The changed properties of dentine and enamel have been shown to be dependent on crystal size and not only mineral content [1],although the connectivity between the mineral crystals has been overlooked.Teeth with carious lesions were sectioned,embedded in polymethylmethacrylate (PMMA) and diamond polished.Nanoindentation and quantitative backscattered electron imaging were used to determine relationships between the elastic modulus and mineral density of sound and carious regions within dentine and enamel.The changes in elastic modulus with decreased mineralization for dentine and enamel could not be explained by simple composite mechanics expressions relating elastic modulus and mineral volume fraction.Finite element modeling of dentine and enamel as a two-phase composite material at the ultrastructure level were used to demonstrate how changes in the mineral phase connectivity can produce changes in the elastic modulus.Tissue models for enamel,in which the mineral phase is both the major component of the structure (approx 85% by volume) and highly interconnected,were consistent with the modulus of sound enamel.The drastic change in enamel modulus with a relatively small change in mineral volume fraction could be modeled as a decrease in mineral phase connectivity at nearly constant volume fraction.The more gradual trend in the dentine data was also consistent with a structure that is initially highly connected in the mineral phase,consistent with the known structure of dentine,and for which the change in modulus is more directly related to changes in mineral content than mineral connectivity.
机译:据报道,牙科组织表现出龋齿矿物质含量和机械性能的相当大降低。已显示牙本质和搪瓷的变化性能依赖于晶体尺寸,不仅是矿物质含量[1],虽然是连通性在矿物晶体之间被忽略。用龋齿的病变嵌入,嵌入聚甲基丙烯酸甲酸乙酯(PMMA)和金刚石抛光。使用牙齿的弹性模量和定量背散射电子成像来确定牙本质内的声音模量和龋齿区域之间的关系和牙釉质。通过简单的复合力学表达与弹性模量和矿物体积分数相关的简单复合力学表达,不能解释弹性模量减少的弹性模量减少。牙本质和牙釉质的微量元素建模作为超微结构水平的两相复合材料用于展示如何变化矿物相连可以产生弹性模量的变化。牙釉质的赋质模型,其中矿物相是结构的主要成分(大约85%(体积)和高度互连,与声音釉质的模量一致。具有相对较小的矿物体积分数变化的搪瓷模量的激烈变化可以在几乎恒定的体积分数下模拟矿物相连接的降低。牙本质数据中的更逐渐趋势也与最初高度相连的结构一致在矿物相中,与牙本质已知的结构一致,并且模量的变化与矿物质含量的变化更直接相关。

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