首页> 外文期刊>Operative dentistry >Effect of mechanical cycling on the push-out bond strength of fiber posts adhesively bonded to human root dentin.
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Effect of mechanical cycling on the push-out bond strength of fiber posts adhesively bonded to human root dentin.

机译:机械循环对与人牙本质牙本质粘合的纤维桩的推出粘结强度的影响。

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摘要

This study evaluated the effect of mechanical cycling on the bond strength of fiber posts bonded to root dentin. The hypotheses examined were that bond strength is not changed after fatigue testing and bond strength does not present vast variations according to the type of fiber post. Sixty crownless, single-rooted human teeth were endodontically treated, with the space prepared at 12 mm. Thirty specimens received a quartz fiber post (Q-FRC) (DT Light-Post), and the remaining 30 specimens received a glass fiber post (G-FRC) (FRC Postec Plus). All the posts were resin luted (All Bond+Duolink), and each specimen was embedded in a cylinder with epoxy resin. The specimens were divided into six groups: G1- Q-FRC+no cycling; G2- Q-FRC+20,000 cycles (load: 50N; angle of 450; frequency: 8Hz); G3- Q-FRC+2,000,000 cycles; G4- G-FRC+no cycling; G5- G-FRC+20,000 cycles; G6- G-FRC+2,000,000 cycles. The specimens were cut perpendicular to their long axis, forming 2-mm thick disc-samples, which were submitted to the push-out test. ANOVA (alpha = .05) revealed that: (a) Q-FRC (7.1 +/- 2.2MPa) and G-FRC (6.9 +/- 2.1MPa) were statistically similar (p = 0.665); (b) the "no cycling" groups (7.0 +/- 2.4MPa), "20,000 cycles" groups (7.0 +/- 2.1MPa) and "2,000,000 cycles" groups (7.0 +/- 2.0MPa) were statistically similar (p = 0.996). It concluded that mechanical cycling did not affect the bond strength of two fiber posts bonded to dentin.
机译:这项研究评估了机械循环对与牙本质牙本质粘合的纤维桩的粘合强度的影响。检验的假设是,在疲劳测试后,粘结强度不会改变,并且粘结强度不会随纤维桩的类型而出现巨大变化。对60颗无冠,单根人牙进行牙髓治疗,间距为12毫米。 30个样本接受了石英纤维桩(Q-FRC)(DT Light-Post),其余30个样本接受了玻璃纤维桩(G-FRC)(FRC Postec Plus)。所有的柱子都用树脂浸胶(All Bond + Duolink),每个样品用环氧树脂包埋在圆柱体中。标本分为六组:G1- Q-FRC +无循环; G2-Q-FRC + 20,000个周期(负载:50N;角度450;频率:8Hz); G3- Q-FRC + 2,000,000个周期; G4- G-FRC +无循环; G5- G-FRC + 20,000个循环; G6- G-FRC + 2,000,000个周期。垂直于长轴切割样品,形成2毫米厚的圆盘样品,然后将其进行推出测试。方差分析(α= 0.05)表明:(a)Q-FRC(7.1 +/- 2.2MPa)和G-FRC(6.9 +/- 2.1MPa)在统计学上相似(p = 0.665); (b)“无循环”组(7.0 +/- 2.4MPa),“ 20,000个循环”组(7.0 +/- 2.1MPa)和“ 2,000,000个循环”组(7.0 +/- 2.0MPa)在统计学上相似(p = 0.996)。结论是机械循环不影响与牙本质粘合的两个纤维柱的粘合强度。

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