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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Effect of laser irradiation on the adhesion of resin-based materials to zirconia: a systematic review and meta-analysis
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Effect of laser irradiation on the adhesion of resin-based materials to zirconia: a systematic review and meta-analysis

机译:激光辐射对氧化锆树脂基材料粘附的影响:系统评价和荟萃分析

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摘要

This systematic review and meta-analysis were made to evaluate the bond strength behavior and failure mode of zirconia surfaces treated by laser irradiation and to highlight the main characteristics and parameters of each laser system. The PubMed, the Scopus, and the Web of Science databases were searched for articles without limit on year of publication, in accordance with the PRISMA guidelines. Forty-three in vitro studies were included and meta-analyses were performed to compare the bond strength values found after the use of lasers, and to quantify the percentage of failures. When compared to untreated groups, the bond strength values found for the lasers ranged from 1.4 to 30.16 MPa for CO2; 1.18 to 40.33 MPa for Nd:YAG; 0 to 22.72 MPa for Er:YAG; and 0.5 to 34.92 MPa for Er,Cr:YSGG. Statistical analysis indicated high heterogeneity in-between the comparisons of different lasers (p < 0.05). When compared to other treatments, the results of the meta-analysis were favorable for tribochemical silica coating (TSC) and airborne-particle abrasion (APA) (p < 0.05), except for the CO2 laser. Adhesive failures were predominant (68.28% for CO2; 65.23% for Nd:YAG; 76% for Er:YAG and 71.91% for Er,Cr:YSGG laser), followed by mixed and cohesive failures. Based on the results of this study, the conditioning of zirconia surfaces through laser irradiation increases the bond strength values when compared to untreated surfaces, regardless of the type of laser used. However, except for CO2 laser, TSC and APA still show superior bond strength results.
机译:本系统回顾和荟萃分析旨在评估激光辐照处理的氧化锆表面的结合强度行为和失效模式,并强调每个激光系统的主要特征和参数。根据PRISMA指南,在PubMed、Scopus和科学网数据库中搜索不受发表年份限制的文章。包括43项体外研究,并进行荟萃分析,以比较使用激光后发现的粘结强度值,并量化失败的百分比。与未经处理的组相比,激光的粘结强度值在1.4到30.16 MPa(CO2)之间;Nd:YAG为1.18~40.33mpa;Er:YAG为0~22.72mpa;Er,Cr:YSGG为0.5至34.92 MPa。统计分析表明,不同激光之间的比较具有高度的异质性(p<0.05)。与其他处理相比,荟萃分析的结果有利于摩擦化学二氧化硅涂层(TSC)和空气颗粒磨损(APA)(p<0.05),CO2激光除外。粘结失效占主导地位(CO2为68.28%,Nd:YAG为65.23%,Er:YAG为76%,Er,Cr:YSGG激光器为71.91%),其次是混合和粘结失效。根据这项研究的结果,与未经处理的表面相比,通过激光照射对氧化锆表面进行处理会增加粘结强度值,无论使用何种类型的激光。然而,除了CO2激光,TSC和APA仍然显示出优越的粘结强度结果。

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