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Er:YAG 和超声荡洗对牙釉质粘结强度稳定性的影响。

Effect of Er:YAG and Burs on Coronal Dentin Bond Strength Stability.

出版信息

J Adhes Dent. 2019;21(4):329-335. doi: 10.3290/j.jad.a42932.

Abstract

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.

摘要

目的

评估不同的牙本质粘结剂和处理方案对金刚石车针和 Er:YAG 激光预备牙体的即刻和老化粘结强度及界面纳米渗漏的影响。

材料与方法

40 个磨牙牙冠被磨平,形成标准化的玷污层。根据牙本质切割技术,将牙齿分为两组:1.Er:YAG 激光,30Hz 重复率,250mJ 脉冲能量,水喷雾灌溉设置为 8 级;2.金刚石车针。每组再根据粘结剂处理方案分为亚组:SG1:牙本质酸蚀 15s 后,应用通用粘结剂(All Bond Universal,Bisco);SG2:应用通用粘结剂(All Bond Universal);SG3:两步自酸蚀粘结剂应用(Clearfil SE Bond 2,Kuraray Noritake);SG4:酸蚀后,三步酸蚀-冲洗粘结剂应用(Optibond FL,Kerr)。固化粘结剂后,用树脂复合材料构建 4mm 厚的堆积体,根据 μTBS 测试技术将试件切成 1mm 厚的棒。在基线和人工唾液储存 6 个月后,对棒进行受力破坏试验。每组取 3 个牙齿进行界面纳米渗漏分析。采用三因素方差分析和 Tukey 事后检验进行数据统计分析(p<0.05)。

结果

处理方式、老化和粘结剂处理方案对粘结强度有显著影响。纳米渗漏分析显示,在基线和老化后,Er:YAG 处理组的边缘渗漏都更高。

结论

与 Er:YAG 激光相比,金刚石车针预备的表面具有更高的粘结强度。粘结剂处理方案和老化都会影响粘结-牙本质界面。需要进一步的研究来验证所获得的结果。

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