使用 Er,Cr:YSGG 激光修复口内牙科陶瓷:综述

Noor Bader Hassan, Basima Mohammed Ali Hussein*
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摘要

导言:全瓷牙冠具有良好的美观性和适当的物理特性,因此被广泛应用于修复和美容牙科。陶瓷崩裂是安装后最常见的并发症之一,可通过口外或口腔内修复。后者是一种省时、创伤小、成本低的替代方法。一种较新的激光客观方法是对陶瓷进行表面改性,以增加表面粗糙度。本研究旨在对 Er,Cr;YSGG(2960nm)在口内修复和剪切结合强度(SBS)方面的应用进行综述。研究方法:考虑到谷歌学术和PubMed发表的数据,进行了全面搜索,找到了2018年至2022年间发表的10篇文章。结果:由于所有陶瓷冠(长石瓷、氧化锆、锂错位体、混合陶瓷)的材料成分存在差异,因此需要采用不同的表面处理方法来获得较强的复合陶瓷间相。Er,Cr:YSGG对瓷的影响很小,低于氢氟酸,而对氧化锆表面的影响与不处理相比是可以接受的。结论:口内修复是一种有效、经济的治疗方法,不需要多次就诊。然而,修复的成功和耐久性取决于技术和临床经验以及对材料成分的深刻理解:口内修复、牙科陶瓷、陶瓷崩瓷、Er,Cr:YSGG 激光和剪切粘接强度(SBS)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intraoral Repair of Dental Ceramics Using Er,Cr:YSGG Laser: Review
Introduction: All-ceramic crowns are widely used in prosthodontics and cosmetic dentistry due to their good esthetic and proper physical properties. Chipping of ceramic is one of the most common post-insertion complications, that can be fixed either extraoral or intraorally. The latter is time time-effective alternative, less traumatic, and low-cost. A newer objective method of laser is a surface modification of ceramics to increase surface roughness. The aim of this study is to provide a review of Er,Cr;YSGG (2960nm) in intraoral repair and shear bond strength (SBS). Method: A thorough search considering Google Scholar and PubMed published data and ten articles found who published between 2018 to 2022. Results:Because of the variation in the material composition of all ceramic crowns (feldspathic porcelain, zirconia, lithium dislocate, hybrid ceramics) different surface treatment methods are required for strong composite ceramic interphase. The effect of Er,Cr:YSGG on porcelain was minimal and lower than hydrofluoric acid, while for zirconia surface can be acceptable compared to no treatment. Conclusion: intraoral repair is an effective and cost-effective treatment that does not require multiple appointments. However, the success and durability of the restoration are dependent on technical and clinical experience and a superior understanding of material composition. Keywords: Intraoral repair, dental ceramics, ceramic chipping, Er,Cr:YSGG laser and shear bond strength (SBS).
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