评估经 Er,Cr:YSGG 和点阵 CO2 激光处理的二硅酸锂表面形态

Noor Azad Mohammed*, Zainab F. Al-Bawi, Balsam saadi Abdulhameed
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Chemical, mechanical, and laser irradiation are among the methods used to precondition ceramic surfaces in order to increase bond strength.The objective of the study: This study was performed to investigate the roughness values and surface topography of lithium disilicate glass-ceramic treated with conventional methods and different Er,Cr:YSGG, and fractional CO2 laser conditioning parameters.Material and methods: Sixty samples of lithium disilicate glass-ceramic were divided as follows: 1- (n = 10) untreated; 2- (n = 10) Hydrofluoric acid etched; 3- (n = 10) conditioned by Er,Cr: YSGG laser at (7 W, 25 Hz, 50/50% Water/Air, pulse duration 60 us, irradiation time 2 min); 4- (n = 10) conditioned by Er,Cr:YSGG  laser at (5 W, 25 Hz, 50/50% Water/Air, pulse duration 60 us, irradiation time 2 min); 5- (n = 10) conditioned by fractional CO2 laser at (power 8 W, pulse duration 10 ms); 6- (n = 10) conditioned by fractional CO2 laser at (power 6 W, pulse duration 10 ms). 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摘要

摘要:间接全瓷修复体在牙医中越来越受欢迎。研究表明,要使间接陶瓷修复体长期有效,必须以稳定的方式粘结水泥和陶瓷。化学、机械和激光照射都是用于陶瓷表面预处理的方法,以提高粘接强度:本研究旨在调查用传统方法和不同的 Er、Cr:YSGG 及部分 CO2 激光调节参数处理的二硅酸锂玻璃陶瓷的粗糙度值和表面形貌:60 个二硅酸锂玻璃陶瓷样品分为以下几类:1- (n = 10) 未处理;2- (n = 10) 氢氟酸腐蚀;3- (n = 10) Er,Cr:7 W,25 Hz,50/50% 水/空气,脉冲持续时间 60 秒,照射时间 2 分钟);4-(n = 10)用 Er,Cr:YSGG 激光调节(5 W,25 Hz,50/50% 水/空气,脉冲持续时间 60 秒,照射时间 2 分钟);5-(n = 10)用部分 CO2 激光调节(功率 8 W,脉冲持续时间 10 ms);6-(n = 10)用部分 CO2 激光调节(功率 6 W,脉冲持续时间 10 ms)。然后进行评估:结果:结果:经 8 W CO2 激光处理的样品的粗糙度值最高,其次是经 7 W Er,Cr:YSGG 激光处理的样品。未经处理的样品表面最光滑,粗糙度值最低:应用 Er,Cr:YSGG、部分 CO2 激光可积极提高二硅酸锂样品的表面粗糙度,这表明在粘接过程中使用这些参数可取得预期效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Lithium Disilicate Surface Morphology Treated with Er,Cr:YSGG and Fractional CO2 Laser
Abstract: The use of indirect, all-ceramic restorations has grown in popularity among dentists. Studies have demonstrated that for indirect ceramic restorations to be effective over time, cement and ceramic must be bonded in a stable manner. Chemical, mechanical, and laser irradiation are among the methods used to precondition ceramic surfaces in order to increase bond strength.The objective of the study: This study was performed to investigate the roughness values and surface topography of lithium disilicate glass-ceramic treated with conventional methods and different Er,Cr:YSGG, and fractional CO2 laser conditioning parameters.Material and methods: Sixty samples of lithium disilicate glass-ceramic were divided as follows: 1- (n = 10) untreated; 2- (n = 10) Hydrofluoric acid etched; 3- (n = 10) conditioned by Er,Cr: YSGG laser at (7 W, 25 Hz, 50/50% Water/Air, pulse duration 60 us, irradiation time 2 min); 4- (n = 10) conditioned by Er,Cr:YSGG  laser at (5 W, 25 Hz, 50/50% Water/Air, pulse duration 60 us, irradiation time 2 min); 5- (n = 10) conditioned by fractional CO2 laser at (power 8 W, pulse duration 10 ms); 6- (n = 10) conditioned by fractional CO2 laser at (power 6 W, pulse duration 10 ms). Then evaluated by: Profilometer, and scanning electron microscopy.Results: The highest roughness values were found in CO2 laser power 8 W treated samples, followed by Er,Cr:YSGG laser power 7W treated samples. The hydrofluoric acid-etched samples showed roughness values comparable to those of CO2 laser-irradiated samples with a power of 6 W. The untreated sample showed the smoothest surface with the lowest roughness value.Conclusion: The application of Er,Cr:YSGG, fractional CO2 lasers enhances the surface roughness of lithium disilicate samples positively, showing the promised results of using these parameters in bonding procedures.
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