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Initial and fatigue bond strengths of nanofilled and conventional composite bonding adhesives

机译:纳米填充和常规复合粘结胶的初始粘结强度和疲劳粘结强度

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Aim: To compare the initial and fatigue shear bond strengths of a nanofilled adhesive with a conventional light-cured adhesive in an ex vivo laboratory study. Methods: Fifty hydroxyapatite discs were prepared by cold pressing. Using a standardized bonding protocol, 100 Victory series upper left central incisor brackets were bonded to discs with Transbond? Supreme LV nanofilled composite resin and 100 brackets were bonded to discs with Transbond XT. Fifty brackets from each group were subjected to cyclic loading (5000 cycles at 2 Hz) at 50% of the mean bond strength in a Dartec Series HC10 Testing Machine. Initial (unfatigued) and fatigued bond strengths were determined by applying a shear force at the bracket/substrate interface using a custom-made metal jig in an Instron Universal Testing Machine. Results and statistical analysis: One-way analysis of variance showed that Transbond Supreme LV exhibited higher initial mean bond strength than Transbond XT (P50.001). No statistically significant difference was found between the fatigue bond strengths of Transbond Supreme LV and Transbond XT (P50.323). Two-way analysis of variance demonstrated statistically significant differences when the effect of the composite resin (P50.013) and fatigue (P50.017) were considered individually. However, when considered in combination there was no statistical significance (P50.09). Kaplan-Meier survival analysis showed superior survival of unfatigued brackets with Transbond Supreme LV, but there was no significant difference between the adhesives after fatiguing. Conclusions: The initial bond strength of Transbond Supreme LV was significantly higher than Transbond XT, while the fatigue bond strengths of both resins were comparable. Overall, Transbond Supreme LV demonstrated superior survival under loading than Transbond XT. However, while this was statistically significant for the initial loading, it was not significant after fatiguing. Although these laboratory findings are useful as indicators of potential clinical performance, extrapolation of these results should be carried out with caution.
机译:目的:在离体实验室研究中,将纳米填充胶粘剂与常规光固化胶粘剂的初始和疲劳剪切强度进行比较。方法:冷压法制备50片羟磷灰石片。使用标准化的粘合方案,使用Transbond?将100个Victory系列左上中切牙支架粘合到椎间盘上。用Transbond XT将Supreme LV纳米填充复合树脂和100个托槽粘结到圆盘上。在Dartec系列HC10测试机中,以50%的平均粘结强度对每组的五十个支架进行循环加载(在2 Hz下5000个循环)。初始(未疲劳)和疲劳粘结强度是通过使用Instron万能试验机中的定制金属夹具在支架/基材界面处施加剪切力来确定的。结果和统计分析:方差的单向分析表明,Transbond Supreme LV的初始平均粘合强度高于Transbond XT(P50.001)。 Transbond Supreme LV和Transbond XT(P50.323)的疲劳粘结强度之间没有发现统计学上的显着差异。当分别考虑复合树脂(P50.013)和疲劳(P50.017)的影响时,方差的双向分析显示出统计学上的显着差异。但是,当综合考虑时,没有统计学意义(P50.09)。 Kaplan-Meier生存分析表明,使用Transbond Supreme LV的未疲劳托架具有较高的存活率,但疲劳后粘合剂之间无显着差异。结论:Transbond Supreme LV的初始粘结强度明显高于Transbond XT,而两种树脂的疲劳粘结强度却相当。总体而言,Transbond Supreme LV在负载下表现出比Transbond XT更高的存活率。但是,尽管这对于初始加载在统计上是显着的,但在疲劳之后却不显着。尽管这些实验室检查结果可作为潜在临床表现的指标,但应谨慎进行这些结果的推断。

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