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Nano-mechanical properties across dentin-enamel junction of adult human incisors

机译:成人人体门牙牙本质 - 搪瓷交界处的纳米力学性能

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The structure and mechanical properties of the dentin-enamel junction (DEJ) in human teeth play a critical role in transferring stress from hard enamel to soft dentin efficiently in order to preserve the longevity of this functionally gradient biocomposite. In this investigation, nano-hardness and elastic modulus of incisor teeth were studied across the dentin-enamel junction. It was found that, over a length scale of between 15 to 25μm, there were decreasing trends in the values of both hardness and elastic modulus across the DEJ zone profiling from enamel to dentin. Images obtained, using atomic force and scanning electron microscopy techniques, from polished surfaces of cross-sectioned teeth samples showed an interpenetrating microstructure of enamel and dentin at the DEJ zone. These results suggest that the nano-mechanical property profiles across the DEJ were due to a continuous variation in the relative amount of enamel and dentin. These characteristics of the DEJ zone could be significant for describing the structural and mechanical coupling of the two structures. By increasing the interfacial contact area across the two mineralized tissues, stresses are dissipated into the softer dentin, thus reducing interfacial stress concentrations at the DEJ. This promotes effective load transfer from the hard enamel to soft dentin.
机译:人牙齿牙本质 - 搪瓷结(DEJ)的结构和机械性能在有效地将硬牙釉质转移到软牙本质中的应力作用起到关键作用,以便保持这种功能梯度生物复合材料的寿命。在该研究中,在牙本质 - 搪瓷结来看,在牙本质牙釉质结中研究了纳米硬度和切牙牙齿的弹性模量。发现,在15至25μm之间的长度范围内,在从牙釉质到牙本质的DEJ区分析中的硬度和弹性模量的值下降趋势降低。使用原子力和扫描电子显微镜技术获得的图像从横截面齿样品的抛光表面显示在DEJ区的牙釉质和牙本质的互穿微观结构。这些结果表明,DEJ上的纳米机械性能是由于牙釉质和牙本质的相对量的连续变化。这些DEJ区域的这些特性对于描述两个结构的结构和机械耦合可能是很大的。通过将两种矿化组织的界面接触面积增加,应力散发到更柔软的牙本质中,从而减少DEJ处的界面应力浓度。这促进了从硬牙釉质到软牙本质的有效载荷转移。

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