Effect of Optical Wedge Rotary on Ablation Efficiency of Femtosecond Laser on Dental Hard Tissue and Restorative Materials.

Xiao Zong, Xu Yang, Yuchun Sun, Yong Wang, Chenggang Duan, Hu Chen
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Abstract

Objective: Femtosecond laser (fs-laser) is a novel tooth preparation tool but its ablation efficiency is insufficient. The purpose is to establish a new fs-laser tooth ablation method based on a dual-wedges path ablation system, and explore the efficiency of tooth hard tissue and dental restorative materials ablation. Materials and methods: Extracted third molars, pure titanium, cobalt-chromium alloy, gold alloy, and 3Y-zirconia were prepared into samples. These samples were rotary ablated by an fs-laser with dual-wedges. The wavelength was 1030 nm and the pulse duration was 250 fsec. Laser parameters were set as a repetition frequency of 25 kHz, the power percentages as 50% for dental tissues, and 60% for restorative materials. The optical wedge angle was set as 0°, 20°, 40°, 60°, and 80° for restorative materials, 0°, 20°, 30°, 40°, and 60° for enamel, and 0°, 10°, 20°, 30°, and 40°for dentin. Three times of ablation was processed at each parameter to obtain total 90 ablation microcavities of 6 kinds of materials. The diameter, depth, and volume of microcavities were measured by confocal laser microscopy and plotted against optical-wedge-angle in curves of different materials. One-way analysis of variance (ANOVA) was used to test whether the ablation efficiency between different angles was statistically significant. Results: The ablation efficiency of each material at different optical-wedge-angle was statistically significant (p < 0.05) and tends to be correlated. For dental hard tissue, the enamel ablation efficiency was 208.1 times and dentin ablation efficiency were 65.2 times than before when the wedge angle was 40°. For pure titanium, zirconia, cobalt-chromium, and gold alloys, the ablation efficiencies were 3.1, 10.7, 81.5, and 128.8 times than before when the rotation angle was 80°. Conclusions: The ablation efficiency of dental hard tissues and restorative materials was significantly increased with the increase of laser oblique incidence angle. Clinical Trial Registration number: PKUSSIRB-201949124.

光楔旋转对飞秒激光对牙体硬组织和修复材料消融效率的影响。
目的:飞秒激光(fs-laser)是一种新型的牙齿制备工具,但其烧蚀效率不足。目的:建立一种基于双楔路径烧蚀系统的新型激光牙齿烧蚀方法,探讨牙硬组织和牙体修复材料烧蚀的效率。材料与方法:将提取的第三磨牙、纯钛、钴铬合金、金合金、3y -氧化锆制备成样品。用双楔激光旋转烧蚀这些样品。波长为1030 nm,脉冲持续时间为250 fsec。激光参数设置为重复频率25 kHz,牙组织功率百分比为50%,修复材料功率百分比为60%。光楔角对修复材料设置为0°、20°、40°、60°、80°,对牙釉质设置为0°、20°、30°、40°、60°,对牙本质设置为0°、10°、20°、30°、40°。对每个参数进行3次烧蚀处理,得到6种材料共90个烧蚀微腔。用激光共聚焦显微镜测量了微腔的直径、深度和体积,并根据不同材料的光楔角绘制了曲线。采用单因素方差分析(ANOVA)检验不同角度的消融效率是否具有统计学意义。结果:不同光楔角度下各材料的消融效率差异有统计学意义(p)。结论:随着激光斜入射角的增加,牙体硬组织和修复材料的消融效率显著提高。临床试验注册号:PKUSSIRB-201949124。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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