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Microstructures and Mechanical Characteristics of Enamel and Dentin of Primary and Permanent Teeth

机译:牙齿牙齿牙釉质和牙本质的微观结构和力学特性

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Objective: To investigate the microstructures and mechanical characteristics of enamel and dentin of primary and permanent teeth by AFM, analyze their relationships and provide information for bionics and designs of dental materials. Methods: After embedding, cutting and grinding, 10 primary teeth and 10 permanent teeth were randomly divided into four groups. The morphology of samples was obtained by AFM and the roughness and Young's modulus were calculated by JPK DP Data processing version 4.0 software. Results: In permanent teeth groups, the enamel rods arrange more tightly than those in primary teeth groups. The roughness of primary enamel (1203±39.5 nm) was higher than permanent teeth (954.6±30.5 nm). The Young's modulus of enamel in primary teeth (80.4±7.7 GPa) was lower than permanent teeth (90.8±2.2 GPa). The roughness of dentin in primary teeth (1695±67.6 nm) is higher than permanent teeth (210±45.3 nm) and the Young's modulus of dentin in primary teeth (19.8±1.9 GPa) was lower than the permanent teeth (23.1±1.0 GPa). Conclusions: The mechanical characteristics of primary and permanent teeth are closely related to their microstructures.
机译:目的:探讨微观结构及珐琅质的机械特性和AFM牙本质恒牙的,分析它们之间的关系和仿生学和牙科材料的设计提供信息。方法:嵌入,切割和研磨后,10颗乳牙和10个恒牙随机分为四组。通过AFM得到的样品的形貌和粗糙度和杨氏模量是由JPK DP数据计算处理版本4.0软件。结果:在永久齿组,该釉质杆安排比在主齿组更紧密。初级搪瓷(1203±39.5纳米)的粗糙度比恒牙(954.6±30.5纳米)更高。在主齿(80.4±7.7 GPa)的釉质的杨氏模量为比永久齿(90.8±2.2 GPa)的下部。在主齿(1695±67.6纳米)的牙本质的粗糙度大于恒牙(210±45.3 nm)与在主齿(19.8±1.9 GPa)的牙本质的杨氏模量较高的被比永久齿(23.1±为1.0GPa下)。结论:恒牙的机械特性密切相关的微观结构。

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