The Effect of Various Lasers on the Bond Strength Between Orthodontic Brackets and Dental Ceramics: A Systematic Review and Meta-Analysis

荟萃分析 粘结强度 激光器 陶瓷 牙科 口腔正畸科 材料科学 医学 复合材料 胶粘剂 物理 光学 图层(电子) 内科学
作者
Seyed Ali Mosaddad,Jaafar Abduo,Mehrnaz Zakizade,Hamid Tebyaniyan,Ahmed Hussain
出处
期刊:Photobiomodulation, photomedicine, and laser surgery [Mary Ann Liebert]
卷期号:42 (1): 20-48 被引量:5
标识
DOI:10.1089/photob.2023.0098
摘要

Background/objective: This systematic review and meta-analysis aimed to assess how laser conditioning affected brackets bonded to dental ceramics' shear bond strength (SBS). Materials and methods: The study was conducted by searching Pubmed/Medline, Scopus, Embase, Web of Science, the Cochrane Library, and Google Scholar up to September 14, 2022. In addition, the reference lists of the relevant articles were checked manually. Articles that compared SBS of laser-treated feldspathic, lithium disilicate, or zirconia surfaces with other standard techniques for bonding metal or ceramic orthodontic brackets were considered. Using a random-effects model, data pooling was carried out as the weighted mean difference (WMD). Results: This study initially contained 1717 reports, and following review, 32 articles were deemed suitable for our meta-analysis. The pooling results showed that the treatments with lasers such as "Er:YAG" [WMD = −1.12 MPa; 95% confidence interval (CI): −1.93 to −0.31], "Er:YAG + Silane" (WMD = −3.08 MPa; 95% CI: −4.77 to −1.40), and "Nd: YAG + Silane" (WMD = −2.58 MPa; 95% CI: −3.76 to −1.40) had statistically significant lower adhesion values compared with controls. Contrarily, "Ti:Sapphire femtosecond" demonstrated significantly higher bonding values (WMD = 0.94 MPa; 95% CI: 0.29–1.60). In contrast, other interventions obtained no statistically significant difference in SBS. Conclusions: Most of the laser groups showed results comparable with those of conventional approaches. Although more research is necessary for definitive conclusions, laser treatment may be an effective option for treating the surfaces of ceramic materials.

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