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Mapping of tooth deformation caused by moisture change using moire interferometry

机译:使用莫尔干涉仪绘制水分变化引起的牙齿变形图

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Bonding of composite restorative materials to teeth usually involves surface etching and drying of both dentin and enamel. These two hard tissues have very different water contents. Objectives: The purpose of this study was to evaluate the effects of changes in humidity on the dimensional changes in dentin disks constrained by enamel and in unconstrained dentin. Methods: Changes in humidity were used to induce changes in the moisture level of the hard tissues, which created a mechanical load across the dentin-enamel junction (DEJ). High-sensitivity moire interferometry was used to measure the magnitudes of the strains. Diffraction gratings (with a sensitivity of 2400 lines/mm) were transferred to moist polished sections of human teeth, which were subsequently dehydrated and then hydrated again. The fringe patterns from moire interferometry recorded the change in deformation between the moisture states. Results: The results indicated that there were wide variations in strain between the two specimen geometries. The strains were fairly constant through the bulk of the dentin in both specimen types. However, the strain gradients were very high across the dentin-enamel interface into the dentin in the unconstrained geometry, and nearly zero in the constrained geometry. Significance: Moire interferometry is a powerful tool to study the deformation of materials that are not isotropic and are not linearly elastic. It provides full-field, high-resolution deformation fields in tooth specimens. Deformations observed in this study indicate that the DEJ zone is a unique material interface that needs to be better understood in terms of normal tooth function, and that its material properties be taken into account when natural hard tissues are restored.
机译:复合修复材料与牙齿的粘合通常涉及牙本质和牙釉质的表面蚀刻和干燥。这两个硬组织的水含量差异很大。目的:本研究的目的是评估湿度变化对牙釉质和牙本质约束牙本质牙本质盘尺寸变化的影响。方法:使用湿度变化来诱导硬组织水分含量的变化,从而在整个牙本质-牙釉质接合处(DEJ)产生机械负荷。使用高灵敏度的莫尔干涉测量法来测量应变的大小。衍射光栅(灵敏度为2400线/毫米)被转移到湿润的人牙齿上,随后进行脱水,然后再次水化。来自莫尔干涉仪的条纹图案记录了水分状态之间变形的变化。结果:结果表明,两个样品几何形状之间的应变差异很大。在两种样品类型中,整个牙本质的应变都相当恒定。然而,在不受约束的几何形状中,穿过牙本质-牙釉质界面进入牙本质的应变梯度非常高,而在受约束的几何形状中几乎为零。意义:莫尔干涉仪是研究非各向同性和线性弹性材料变形的有力工具。它提供了牙齿样本中的全场,高分辨率变形场。在这项研究中观察到的变形表明,DEJ区是一个独特的材料界面,需要从正常的牙齿功能方面更好地理解它,并且在恢复天然硬组织时要考虑其材料特性。

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