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氟斑牙釉质梯度纳米力学行为的研究

Investigation on the Gradient Nanomechanical Behavior of Dental Fluorosis Enamel.

作者信息

Min Jie, Yu Ping, Xu Zhou, Li Zhi, Zhang Qianqian, Yu Haiyang, Gao Shanshan

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

出版信息

Nanoscale Res Lett. 2018 Oct 30;13(1):347. doi: 10.1186/s11671-018-2768-y.

Abstract

This study aims to investigate the gradient nanomechanical behavior of dental fluorosis enamel and provide appropriate selection criteria for restorative materials. The nanomechanical properties of the outer, middle, and inner layers of normal tooth enamel, mild dental fluorosis enamel, and severe dental fluorosis enamel were tested by nanoindentation under an applied load of 2000 μN and holding time of 30 s. The nanotribological properties were then evaluated through nanoscratch tests under an applied load of 1000 μN. In addition, the nanotribological property of the outer layer of dental fluorosis enamel was compared with that of four restorative materials, namely, lithium disilicate glass-ceramic (IPS e.max CAD), polymer-infiltrated-ceramic network (PICN), composite resin block (Lava™ ultimate), and conventional composite resin (Fltek™ Z350XT). The nanohardness and elastic modulus of mild dental fluorosis enamel increased from the outer to the middle layers and then decreased from the middle to the inner layers. By contrast, the changed displacement, friction coefficient, and nanoscratch depth and width decreased from the outer to the middle layers and then increased from the middle to the inner layers. In severe dental fluorosis enamel, nanohardness and elastic modulus increased from the outer to the inner layers, but the changed displacement, friction coefficient, and nanoscratch depth and width decreased from the outer to the inner layers. The nanoscratch depth and width of Lava™ ultimate were similar to those of the outer layer of the mild dental fluorosis enamel. The gradient nanomechanical behavior of dental fluorosis enamel significantly differed from that of normal tooth enamel. Dental materials with a wear resistance similar to that of the opposing enamel are a good choice for restoring dental fluorosis (trial registration: WCHSIRB-D-2014-126, registered 25 December 2014).

摘要

本研究旨在探究氟斑牙釉质的梯度纳米力学行为,并为修复材料提供合适的选择标准。通过在2000 μN的外加负载和30 s的保持时间下进行纳米压痕测试,对正常牙釉质、轻度氟斑牙釉质和重度氟斑牙釉质的外层、中层和内层的纳米力学性能进行了测试。然后在1000 μN的外加负载下通过纳米划痕测试评估纳米摩擦学性能。此外,还将氟斑牙釉质外层的纳米摩擦学性能与四种修复材料进行了比较,这四种修复材料分别是二硅酸锂玻璃陶瓷(IPS e.max CAD)、聚合物渗透陶瓷网络(PICN)、复合树脂块(Lava™ ultimate)和传统复合树脂(Fltek™ Z350XT)。轻度氟斑牙釉质的纳米硬度和弹性模量从外层到中层增加,然后从中层到内层降低。相比之下,变化位移、摩擦系数以及纳米划痕深度和宽度从外层到中层减小,然后从中层到内层增加。在重度氟斑牙釉质中,纳米硬度和弹性模量从外层到内层增加,但变化位移、摩擦系数以及纳米划痕深度和宽度从外层到内层减小。Lava™ ultimate的纳米划痕深度和宽度与轻度氟斑牙釉质外层的相似。氟斑牙釉质的梯度纳米力学行为与正常牙釉质的显著不同。耐磨性与相对的牙釉质相似的牙科材料是修复氟斑牙的良好选择(试验注册号:WCHSIRB-D-2014-126,于2014年12月25日注册)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2856/6207606/5b22e05c4dd2/11671_2018_2768_Fig1_HTML.jpg

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