García-Sanz Verónica, Paredes-Gallardo Vanessa, Mendoza-Yero Omel, Carbonell-Leal Miguel, Albaladejo Alberto, Montiel-Company José María, Bellot-Arcís Carlos
Department of Stomatology, Faculty of Medicine and Dentistry, University of Valencia, Valencia, Spain.
GROC•UJI, Institute of New Imaging Technologies, Universitat Jaume I, Castellón, Spain.
PLoS One. 2018 Jan 2;13(1):e0190736. doi: 10.1371/journal.pone.0190736. eCollection 2018.
Lasers have recently been introduced as an alternative means of conditioning dental ceramic surfaces in order to enhance their adhesive strength to cements and other materials. The present systematic review and meta-analysis aimed to review and quantitatively analyze the available literature in order to determine which bond protocols and laser types are the most effective. A search was conducted in the Pubmed, Embase and Scopus databases for papers published up to April 2017. PRISMA guidelines for systematic review and meta-analysis were followed. Fifty-two papers were eligible for inclusion in the review. Twenty-five studies were synthesized quantitatively. Lasers were found to increase bond strength of ceramic surfaces to resin cements and composites when compared with control specimens (p-value < 0.01), whereas no significant differences were found in comparison with air-particle abraded surfaces. High variability can be observed in adhesion values between different analyses, pointing to a need to standardize study protocols and to determine the optimal parameters for each laser type.
最近,激光已被引入作为处理牙科陶瓷表面的一种替代方法,以提高其与粘结剂和其他材料的粘结强度。本系统评价和荟萃分析旨在回顾和定量分析现有文献,以确定哪种粘结方案和激光类型最有效。在Pubmed、Embase和Scopus数据库中检索截至2017年4月发表的论文。遵循系统评价和荟萃分析的PRISMA指南。52篇论文符合纳入本评价的条件。25项研究进行了定量综合分析。与对照样本相比,发现激光可提高陶瓷表面与树脂粘结剂和复合材料的粘结强度(p值<0.01),而与空气颗粒研磨表面相比未发现显著差异。不同分析之间的粘附值存在很大差异,这表明需要规范研究方案并确定每种激光类型的最佳参数。