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Evaluation of enamel surface modification using PS-OCT after laser treatment to increase resistance to demineralization

机译:激光处理后使用PS-OCT评估搪瓷表面改性以增加抗脱盐性

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摘要

At laser intensities below ablation, carbonated hydroxyapatite in enamel is converted into a purer phase hydroxyapatite with increased acid resistance. Previous studies suggested the possibility of achieving the conversion without surface modification. This study attempts to evaluate the thresholds for the modification without additional changes in physical and optical properties of the enamel. Bovine specimens were irradiated using an RF-excited CO2 laser operating at 9.4-µm with a pulse duration of 26-µs, pulse repetition rates of 100–1000 Hz, with a Gaussian spatial beam profile - 1.4 mm in diameter. After laser treatment, the samples were subjected to acid demineralization for 48 hours to simulate acidic intraoral conditions of a caries attack. The resulting demineralization and erosion were assessed using polarization sensitive OCT (PS-OCT) and 3D digital microscopy. The images from digital microscopy demonstrated a clear delineation between laser protected zones without visual changes and zones with higher levels of demineralization and erosion. Distinct changes in the surface morphology were found within the laser treated area in accordance with the Gaussian spatial beam profile. There was significant protection from the laser in areas that were not visually altered.
机译:在低于烧蚀的激光强度下,搪瓷中的碳酸羟基磷灰石会转变为具有更高耐酸性的纯相羟基磷灰石。先前的研究表明无需表面改性即可实现转化的可能性。这项研究试图评估改性的阈值,而瓷釉的物理和光学特性没有其他变化。用RF激发的CO2激光辐照牛标本,该激光在9.4 µm的波长下工作,脉冲持续时间为26 µs,脉冲重复频率为100–1000 Hz,高斯空间光束轮廓为直径1.4 mm。激光处理后,将样品进行酸脱盐处理48小时,以模拟龋齿发作的酸性口腔内条件。使用极化敏感OCT(PS-OCT)和3D数字显微镜对产生的脱矿质和侵蚀进行了评估。来自数字显微镜的图像证明了在没有视觉变化的激光保护区域与具有更高水平的脱矿物质和侵蚀的区域之间的清晰轮廓。根据高斯空间光束轮廓,在激光处理区域内发现了表面形态的明显变化。在没有视觉改变的区域中,可以有效保护激光。

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