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Effectiveness and dentin bond strengths of two materials for reinforcing thin-walled roots

机译:两种材料薄壁牙根的有效性和牙本质粘合强度

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Objectives. To investigate the effectiveness of two restorative materials for reinforcing thin-walled roots and their microtensile bond strengths to root canal dentin. Methods. Twenty-one decoronated maxillary central incisor roots were root filled and the canals enlarged to leave approximately 1.0 mm thick dentin walls. The roots were distributed randomly to three equal groups. Group 1 (control): a large tapered cast post-core was fabricated. Group 2 (BIS-CORE): a thick layer of dual-cured composite was placed in the post-hole before fabrication of a small-diameter tapered cast post-core. Group 3 (ChemFil Superior): a thick layer of glass-ionomer was placed, as before. Metal-ceramic crowns were fabricated for all teeth. Microtensile bond strength tests and optical and atomic force microscope observations were employed to examine adhesion between the two restorative materials and the root canal dentin. Results. Mechanical loading (kN) demonstrated that composite 0.64 (S.D. 0.05), but not glass-ionomer 0.49 (0.05), significantly reinforced the fracture resistance of thin-walled roots, P< 0.001. Microtensile bond strengths (MPa) were 21.7 (1.6) for composite and 12.9 (1.7) for glass-ionomer, P = 002. Significance. A thick intermediate layer of resin-bonded composite, sandwiched between the root dentin and a small-diameter cast Ni-Cr post or dowel, increased significantly the fracture resistance of the roots.
机译:目标。调查两种修复材料的有效性,以加强薄壁根部及其与根管牙本质的微拉伸结合强度。方法。将二十一个去修饰的上颌中切牙根部填满,并将根管扩大以留下约1.0毫米厚的牙本质壁。根随机分布到三个相等的组。第一组(对照组):制造了一个大的锥形铸件型芯。第2组(BIS-CORE):在制造小直径锥形浇铸后型芯之前,将厚层的双重固化复合材料置于后型孔中。第3组(ChemFil Superior):像以前一样放置一层厚的玻璃离聚物。为所有牙齿制作了金属陶瓷冠。使用微拉伸粘合强度测试以及光学和原子力显微镜观察来检查两种修复材料与根管牙本质之间的粘附。结果。机械载荷(kN)表明复合材料0.64(标准偏差0.05),而非玻璃离聚物0.49(0.05)显着增强了薄壁根部的抗断裂性,P <0.001。复合材料的微拉伸粘合强度(MPa)为21.7(1.6),玻璃离聚物的微拉伸粘合强度(MPa)为12.9(1.7),P = 002。树脂粘结复合材料的厚中间层夹在牙本质牙本质和小直径铸造Ni-Cr桩或销钉之间,显着提高了牙根的抗断裂性。

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