Er:YAG和Burs对冠状牙本质粘结强度稳定性的影响。

A. Comba, A. Baldi, Riccardo Michelotto Tempesta, Aristea Cedrone, Giorgia Carpegna, A. Mazzoni, L. Breschi, M. Alovisi, D. Pasqualini, N. Scotti
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引用次数: 7

摘要

目的评价金刚石毛刺和Er:YAG激光制备牙体的不同粘结剂和工艺对牙体即刻和老化粘结强度及界面纳米间隙的影响。材料与方法将40个磨牙冠压平,形成标准化涂片层。根据牙本质切割技术的不同,将牙本质分为两大类。Er:YAG激光30 s, 30 Hz重复频率,每脉冲250 mJ能量,水喷灌设置为8级;和2。金刚石钻头。然后根据粘接方案将每组分成亚组:SG1:牙本质蚀刻15s,然后使用通用粘接(All Bond universal, Bisco);SG2:通用粘合剂应用(All Bond universal);SG3:两步自蚀刻粘合剂应用(Clearfil SE Bond 2, Kuraray Noritake);SG4:蚀刻,然后是3步蚀刻和冲洗粘合剂应用(Optibond FL, Kerr)。胶粘剂固化后,制作4 mm的树脂复合材料,按照μTBS测试技术对试件进行切片,得到1 mm厚的粘胶棒。在基线和人工唾液中储存6个月后,棒被应激至失效。每组制备3颗牙进行纳米渗漏界面分析。数据采用三因素方差分析和Tukey事后检验(p < 0.05)进行统计学分析。结果不同处理方式、老化方式、粘接方式的粘接强度差异有统计学意义。纳米渗漏分析显示,Er: yag处理组在基线和老化后均有较高的边际浸润。结论金刚石毛刺制备的表面比Er:YAG激光制备的表面具有更高的结合强度。粘接方式和老化对粘接剂-牙本质界面有影响。需要进一步的研究来验证所获得的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Er:YAG and Burs on Coronal Dentin Bond Strength Stability.
PURPOSE To evaluate the immediate and aged bond strength and interfacial nanolaekage of different adhesives and protocols on dental elements prepared with diamond burs and Er:YAG laser. MATERIALS AND METHODS Forty molar crowns were flattened and a standardized smear layer was created. Teeth were divided into two main groups according to the dentin cutting technique: 1. Er:YAG laser for 30 s at 30 Hz repetition rate, 250 mJ energy per pulse, and water spray irrigation set at level 8; and 2. diamond bur. Each group was then divided into subgroups according to the adhesive protocol: SG1: dentin etching for 15 s followed by universal adhesive application (All Bond Universal, Bisco); SG2: universal adhesive application (All Bond Universal); SG3: two-step self-etch adhesive application (Clearfil SE Bond 2, Kuraray Noritake); SG4: etching followed by 3-step etch-and-rinse adhesive application (Optibond FL, Kerr). After curing the adhesives, resin composite buildups of 4 mm were made and specimens were sectioned to obtain 1-mm-thick sticks in accordance with the μTBS test technique. Sticks were stressed to failure at baseline and after 6 months of storage in artificial saliva. Three teeth per group were prepared for nanoleakage interfacial analyses. Data were statistically analyzed with three-way ANOVA and Tukey's post-hoc test (p < 0.05). RESULTS A significant difference in bond strengths was found for treatment, aging, and adhesive protocol. Nanoleakage analysis showed higher marginal infiltration in Er:YAG-treated groups both at baseline and after aging. CONCLUSIONS Surfaces prepared with diamond burs presented higher bond strengths than did those prepared with Er:YAG laser. Adhesive protocols and aging could influence the adhesive-dentin interface. Further studies are necessary to validate the results obtained.
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