首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Shear bond strength of four resin cements used to lute ceramic core material to human dentin.
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Shear bond strength of four resin cements used to lute ceramic core material to human dentin.

机译:用于将陶瓷芯材料冲刷到人牙本质上的四种树脂水泥的剪切粘结强度。

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摘要

PURPOSE: This study evaluated the effect of four resin cements on the shear bond strength of a ceramic core material to dentin. MATERIALS AND METHODS: One hundred twenty molar teeth were embedded in a self-curing acrylic resin. The occlusal third of the crowns were sectioned under water cooling. All specimens were randomly divided into four groups of 30 teeth each according to the resin cement used. One hundred twenty cylindrical-shaped, 2.7-mm wide, 3-mm high ceramic core materials were heat-pressed. The core cylinders were then luted with one of the four resin systems to dentin (Super-Bond C&B, Chemiace II, Variolink II, and Panavia F). Half of the specimens (n = 15) were tested after 24 hours; the other half (n = 15) were stored in distilled water at 37 degrees C for 1 day and then thermocycled 1000 times between 5 degrees C and 55 degrees C prior to testing. Shear bond strength of each specimen was measured using a universal testing machine at a crosshead speed of 1 mm/min. The bond strength valueswere calculated in MPa, and the results were statistically analyzed using a two-way analysis of variance (ANOVA) and Tukey HSD tests. RESULTS: The shear bond strength varied significantly depending on the resin cement used (p < 0.05). The differences in the bond strengths after thermocycling were not remarkable as compared with the corresponding prethermal cycling groups (p > 0.05). Significant interactions were present between resin cement and thermocycling (p < 0.05). After 24 hours, the specimens luted with Variolink II (5.3 +/- 2.2 MPa) showed the highest shear bond strength, whereas the specimens luted with Chemiace II (1.6 +/- 0.4 MPa) showed the lowest. After thermocycling, the bond strength values of specimens luted with Chemiace II (1.1 +/- 0.1 MPa) and Super-Bond C&B (1.7 +/- 0.4 MPa) decreased; however, this was not statistically significant (p > 0.05). The increase in the shear bond strength values in the Panavia F (4.5 +/- 0.7 MPa) and Variolink II (5.5 +/- 2.1 MPa) groups after thermocycling wasalso not statistically significant (p > 0.05). CONCLUSION: Variolink II and Panavia F systems showed higher shear bond strength values than Chemiace II and Super-Bond C&B. They can be recommended for luting ceramic cores to dentin surfaces.
机译:目的:本研究评估了四种树脂胶粘剂对陶瓷芯材料与牙本质的剪切粘结强度的影响。材料与方法:将120颗磨牙嵌入自固化丙烯酸树脂中。在水冷条件下切开三分之一的牙冠。根据所用树脂胶粘剂,将所有标本随机分为四组,每组30个牙齿。对一百二十个圆柱形,2.7毫米宽,3毫米高的陶瓷芯材料进行热压。然后用四种树脂体系之一将芯圆柱体吸引到牙本质上(Super-Bond C&B,Chemiace II,Variolink II和Panavia F)。 24小时后测试了一半的标本(n = 15)。另一半(n = 15)在37摄氏度的蒸馏水中保存1天,然后在测试之前在5摄氏度至55摄氏度之间热循环1000次。使用万能试验机以1mm / min的十字头速度测量每个样品的剪切粘结强度。以MPa计算粘结强度值,并使用方差双向分析(ANOVA)和Tukey HSD测试对结果进行统计分析。结果:剪切粘结强度根据所使用的树脂胶粘剂而有显着变化(p <0.05)。与相应的预热循环组相比,热循环后的粘合强度差异不明显(p> 0.05)。树脂水泥与热循环之间存在显着的相互作用(p <0.05)。 24小时后,用Variolink II(5.3 +/- 2.2 MPa)诱惑的样品显示出最高的剪切粘结强度,而用Chemiace II(1.6 +/- 0.4 MPa)诱惑的样品显示出最低的剪切强度。热循环后,用Chemiace II(1.1 +/- 0.1 MPa)和Super-Bond C&B(1.7 +/- 0.4 MPa)粘合的试样的结合强度值降低;但是,这在统计学上不显着(p> 0.05)。在热循环后,Panavia F(4.5 +/- 0.7 MPa)和Variolink II(5.5 +/- 2.1 MPa)组的剪切粘结强度值的增加也没有统计学意义(p> 0.05)。结论:Variolink II和Panavia F系统显示出比Chemiace II和Super-Bond C&B高的剪切粘结强度值。可以推荐使用它们将陶瓷芯浸入牙本质表面。

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