...
首页> 外文期刊>Operative dentistry >Effect of solvent type on microtensile bond strength of a total-etch one-bottle adhesive system to moist or dry dentin.
【24h】

Effect of solvent type on microtensile bond strength of a total-etch one-bottle adhesive system to moist or dry dentin.

机译:溶剂类型对全蚀刻单瓶粘合系统对湿润或干燥牙本质的微拉伸粘合强度的影响。

获取原文
获取原文并翻译 | 示例

摘要

This study evaluated the effect of organic solvent (acetone or ethanol) on the microtensile bond strengths (MTBS) of an adhesive system applied to dry and moist dentin. Sixteen extracted human third molars were ground to expose a flat occlusal dentin surface and acid etched for 20 seconds (20% phosphoric acid gel, Gluma Etch 20 Gel, Heraeus/Kulzer). After rinsing the acid etchant, an ethanol-based one-bottle adhesive system was applied to the mesial half of the occlusal dentin surface. An acetone-based, one-bottle adhesive system was applied to the distal half of the ground dentin surface. The teeth were randomly assigned to groups. In Group 1, the etched dentin was thoroughly air dried and an ethanol-based one-bottle adhesive system was applied (Gluma Comfort Bond, Heraeus/Kulzer) (GCB). In Group 2, the etched dentin was thoroughly air dried and an acetone-based one-bottle adhesive system was applied (Gluma One Bond, Heraeus/Kulzer)(GOB). In Group 3, excess moisture was removed after acid etching, leaving a moist dentin surface and a one-bottle ethanol-based adhesive was applied (Gluma Comfort Bond). In Group 4, excess moisture was removed after acid etching, leaving a moist dentin surface and an acetone-based adhesive was applied (Gluma One Bond). A hybrid resin composite (Venus, Heraeus/Kulzer) was applied to the bonded surface in four 1-mm increments and light cured according to manufacturer's directions. The specimens were then sectioned with a slow-speed diamond saw in two perpendicular directions to obtain sticks with a cross-section of 0.5 +/- 0.05 mm2. The microtensile bond strength (MTBS) test was performed with a Bencor device in an Instron machine at a crosshead speed of 0.5 mm/minute. The data were subjected to a two-way ANOVA and Scheffe Post hoc test (p < 0.05). The experimental MTBS measured for dry dentin were Group 1 = 37.0 +/- 10.6 and Group 2 = 34.7 +/- 9.0 in MPa (mean +/- SD); and on moist dentin, Group 3 = 50.7 +/- 11.0 and Group 4 = 38.5 +/- 10.5 in MPa (mean +/- SD). The ethanolbased adhesives resulted in higher MTBS than acetone-based adhesive (p < 0.008) and bonding to moist dentin resulted in higher MTBS (p < 0.001). GCB applied on moist dentin resulted in statistically higher bond strengths than the other groups. The highest MTBS were achieved with the use of an ethanol-based adhesive to moist dentin.
机译:这项研究评估了有机溶剂(丙酮或乙醇)对应用于干燥和湿润牙本质的粘合剂体系的微拉伸粘合强度(MTBS)的影响。将十六个提取的人类第三磨牙磨碎以暴露平坦的咬合牙本质表面,并酸蚀20秒钟(20%磷酸凝胶,Gluma Etch 20凝胶,Heraeus / Kulzer)。漂洗酸性蚀刻剂后,将基于乙醇的一瓶粘合系统涂在咬合牙本质表面的中半部。将丙酮基单瓶粘合剂系统应用于磨碎的牙本质表面的远端。牙齿被随机分组​​。在第1组中,将经过蚀刻的牙本质彻底风干,并使用基于乙醇的单瓶粘合剂系统(Gluma Comfort Bond,Heraeus / Kulzer)(GCB)。在第2组中,将蚀刻后的牙本质彻底风干,然后使用基于丙酮的一瓶粘合系统(Gluma One Bond,Heraeus / Kulzer)(GOB)。在第3组中,酸蚀后去除了多余的水分,留下了潮湿的牙本质表面,并涂了一瓶乙醇基粘合剂(Gluma Comfort Bond)。在第4组中,酸蚀后去除了多余的水分,留下了潮湿的牙本质表面,并施加了丙酮基粘合剂(Gluma One Bond)。将杂化树脂复合材料(维纳斯(Venus),贺利氏(Heraeus / Kulzer))以1mm的四个增量施加到粘合表面,并根据制造商的说明进行光固化。然后用慢速金刚石锯在两个垂直方向上对样品进行切片,以获得横截面为0.5 +/- 0.05mm 2的棒。用Instron机器中的Bencor装置以0.5mm /分钟的十字头速度进行微拉伸粘合强度(MTBS)测试。数据经过双向方差分析和Scheffe Post hoc检验(p <0.05)。测量的干燥牙本质的实验MTBS为第1组= 37.0 +/- 10.6,第2组= 34.7 +/- 9.0 MPa(均值+/- SD);在潮湿的牙本质上,第3组= 50.7 +/- 11.0,第4组= 38.5 +/- 10.5 MPa(均值+/- SD)。乙醇基胶粘剂的MTBS高于丙酮基胶粘剂(p <0.008),与湿润牙本质的粘合导致MTBS更高(p <0.001)。在潮湿的牙本质上使用GCB产生的统计粘合强度高于其他组。使用乙醇基粘合剂润湿牙本质可达到最高的MTBS。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号