Ondokuz Mayis University, Faculty of Dentistry, Department of Prosthodontics, Samsun, Turkey.
Acta Odontol Scand. 2012 Dec;70(6):541-6. doi: 10.3109/00016357.2011.600718. Epub 2011 Jul 25.
The purpose of this in vitro study was to evaluate the influence of different power outputs of a carbon dioxide (CO2) laser on shear bond strength of resin cement to zirconium dioxide-based ceramic.
Fifty zirconium dioxide core specimens (10 mm diameter and 2 mm thickness) were produced and they were embedded in the centers of auto-polymerizing acrylic resin blocks. Ten specimens served as control and no surface treatment was applied. Subsequently specimens were randomly divided into four groups, each containing 10 specimens for surface treatment with CO2 laser with different output power; laser treated with 2 W (Group 2 W), 3 W (Group 3 W), 4 W (Group 4 W) and finally 5 W (Group 5 W). Fifty composite resin discs were fabricated and cemented with adhesive resin cement to the specimen surfaces. A universal test machine was used for shear bond strength test at a crosshead speed 1 mm/min. Data were statistically analyzed by one-way analyses of variance (ANOVA) with Post-Hoc Tukey tests (α = 0.05).
It was found that the shear bond strength values were affected by power outputs of laser (p < 0.05). Highest shear bond strength values were obtained with group 2 W (21.0 ± 2.7). Lowest values were obtained with group 5 W (14.4 ± 1.6).
The current study revealed that there was a relationship between laser output power and shear bond strength for zirconium dioxide ceramics. However, output power of the laser and the energy level is a critical factor on micromechanical retention.
本体外研究旨在评估二氧化碳(CO2)激光不同输出功率对氧化锆基陶瓷与树脂水门汀粘结剪切强度的影响。
制作 50 个氧化锆核心标本(直径 10mm,厚 2mm),并将其嵌入自聚合丙烯酸树脂块的中心。10 个标本作为对照,不进行表面处理。随后,将标本随机分为 4 组,每组 10 个标本,用不同输出功率的 CO2 激光进行表面处理:激光功率为 2W(组 2W)、3W(组 3W)、4W(组 4W)和 5W(组 5W)。制作 50 个复合树脂圆盘,并用粘结树脂水门汀粘结到标本表面。用万能试验机以 1mm/min 的十字头速度进行剪切粘结强度测试。数据采用单向方差分析(ANOVA)和事后 Tukey 检验(α=0.05)进行统计学分析。
发现激光输出功率对粘结剪切强度值有影响(p<0.05)。组 2W(21.0±2.7)的粘结剪切强度值最高。组 5W(14.4±1.6)的粘结剪切强度值最低。
本研究表明,激光输出功率与氧化锆陶瓷的粘结剪切强度之间存在关系。然而,激光的输出功率和能量水平是影响微机械保持力的关键因素。