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Bond strengths of bulk-fill resin composite repairs: effect of different surface treatment protocols in vitro

机译:块状填充树脂复合材料修复的粘合强度:不同表面处理方案在体外作用

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To evaluate the effect of different surface treatment protocols on the microtensile bond strength (mu TBS) of bulk-fill resin composite repairs. Thirty-five bulk-fill resin composite samples (Filtek Bulk Fill) were prepared (5x5x5 mm) and aged by thermocycling (X5000). Samples were randomly divided into five groups (n=7): a control (no treatment) and four surface treatment groups (Single Bond Universal [SBU]; phosphoric acid (37%)+SBU; Er,Cr:YSGG laser+SBU; aluminum oxide sandblasting+SBU). Filtek Ultimate Universal composite was used as a repair material. After storage for 24 h in distilled water (37 degrees C), sticks were obtained and subjected to a mu TBS test. The data (MPa) were analyzed by one-way ANOVA with a post hoc test (alpha=0.05). Failure mode was evaluated using a light microscope (10x). There were significant differences between the groups (p0.05). The lowest bond strength values were obtained in the control group (p0.05). No significant difference was observed between Group II (universal adhesive) and Group III (acid etch+universal adhesive) (p0.05). The bond strength of Group II was significantly lower than that of the other surface treatment groups (p0.05). While Group III showed significantly lower values than those of the laser treatment group (Group IV), similar values were obtained with Al2O3 sandblasting group (Group V). The highest repair bond strength was obtained in Group IV (p0.05) which was not significantly different from the Al2O3 sandblasting group (p0.05). The predominant failure mode was adhesive. Treatment of aged bulk-fill resin composite surfaces with laser and Al2O3 sandblasting provided higher repair bond strength values.
机译:评价不同表面处理方案对批量填充树脂复合材料修理的微调粘合强度(MU TBS)的影响。制备了三十五个块状填充树脂复合样品(FILTEK批量填充)(5×5毫米),通过热循环(X5000)老化。将样品随机分为五组(n = 7):对照(无处理)和四个表面处理基团(单键通用[SBU];磷酸(37%)+ SBU;呃,CR:YSGG激光+ SBU;氧化铝喷砂+ SBU)。 FILTEK Ultimate Universal Composite用作修复材料。在蒸馏水中储存24小时后(37摄氏度),获得棒并进行MU TBS试验。通过单后ANOVA分析数据(MPA),具有后HOC测试(alpha = 0.05)。使用光学显微镜(10x)评估失效模式。组之间存在显着差异(P <0.05)。在对照组中获得最低键合强度值(P <0.05)。在II族(Universal粘合剂)和III组(酸蚀刻+通用粘合剂)之间没有观察到显着差异(P&GT; 0.05)。 II组键强度明显低于其他表面处理基团的强度(P <0.05)。虽然III组的值显着低于激光处理组(IV组),但用Al2O3喷砂组(V)获得类似的值。在IV族(P <0.05)中获得最高的修复粘合强度,其与Al 2 O 3喷砂组(P&Gt; 0.05)没有显着不同。主要的失效模式是粘合剂。用激光和Al2O3喷砂处理老化块状填充树脂复合表面提供更高的修复粘合强度值。

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