Surface Treatment of Indirect Restorations

Shahad Jabbar Jassim, Manhal A. Majeed
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Abstract

Background: All ceramic CAD/CAM materials require surface treatment protocols varying from one type to another according to their chemical composition, including hydrofluoric acid etching, sandblasting, silica coating, laser etching, and non-thermal plasma treatment. This review's objective to analyze and bring up-to-date data about the surface treatment of ceramics.Data: The review just searched electronic publications of papers. Websites "Google Scholar" and "PubMed" were utilized as sources for performing data searches using the following keywords: Surface modification, plasma surface treatment, indirect restoration, ceramics The original papers and clinical investigations that were published between the years 2006 to March 2023 that were the most relevant to the subject at hand were chosen.Conclusion: A variety of surface treatment methods have been proposed to enhance the bonding of restorative materials to resin cement and provide micromechanical retention by altering the restoration's surface mechanically by increasing the degree of roughness or physico/chemically by activating the surface. Hydrophloric acid etch is a golden standard for the surface treatment of feldspathic and lithium disilicate ceramics, the APC concept for zirconia, and hydrofluoric acid or sandblast surface treatment for resin nano-ceramic. A new approach used for surface treatment is plasma treatment, which is really promising in dentistry.
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间接修复体的表面处理
背景:所有陶瓷 CAD/CAM 材料都需要根据其化学成分采用不同的表面处理方案,包括氢氟酸蚀刻、喷砂、二氧化硅涂层、激光蚀刻和非热等离子处理。本综述旨在分析陶瓷表面处理的最新数据:本综述只搜索了电子出版物上的论文。利用 "Google Scholar "和 "PubMed "网站作为资料来源,使用以下关键词进行数据搜索:表面改性、等离子表面处理、间接修复、陶瓷 选择了 2006 年至 2023 年 3 月间发表的与当前主题最相关的原始论文和临床研究:人们提出了多种表面处理方法,通过增加表面粗糙度或通过激活表面的物理/化学性质来改变修复体表面,从而增强修复材料与树脂水泥的粘结力,并提供微机械固位。氢氯酸蚀刻是长石和二硅酸锂陶瓷表面处理的黄金标准,APC 概念用于氧化锆,氢氟酸或喷砂表面处理用于树脂纳米陶瓷。等离子处理是一种新的表面处理方法,在牙科领域大有可为。
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