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In Vitro Fatigue and Fracture Resistance of One- and Two-Piece CAD/CAM Zirconia Implant Abutments

机译:一和两片CAD / CAM氧化锆种植体基台的体外疲劳和抗断裂性能

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Purpose: All-ceramic abutments are employed increasingly often in implant dentistry for esthetic reasons. In vitro stress testing is required to evaluate the suitability of these constructions, especially in load-bearing posterior regions. The purpose of the study was to assess and compare the fatigue and fracture resistance of one-and two-piece computer-aided design/computer-assisted manufacture (CAD/CAM) zirconia implant abutments with an internal-hex connection and prefabricated commercially available zirconia stock abutments. Materials and Methods: Twenty-one abutment-crown specimens were prepared for three test groups. Control group 1 (SZ) included specimens with unprepared stock zirconia abutments, test group 2 (OP) included one-piece CAD/CAM zirconia abutments, and test group 3 (TP) included two-piece CAD/CAM zirconia abutments. All 21 specimens underwent thermocycling and fatigue testing. Finally, all specimens were tested for fracture resistance with a universal testing machine. The maximum load was applied to the tapered occlusal area of each crown at a 30-degree angle and a crosshead speed of 0.5 mm/min until the implant-abutment connection failed. Kolmogorov-Smirnov, Shapiro-Wilk, and post-hoc Scheffe tests were used for statistical analysis. Results: All abutments in groups SZ and OP fractured into two or more pieces after fracture resistance testing. None of the TP abutments displayed apparent disintegration, but failure was evidenced by bending of the retention screw. OP abutments (232.1 +/- 29.8 N) and SZ abutments (251.8 +/- 23.2 N) showed lower fracture loads than the TP abutments (291.4 +/- 27.8 N). However, only the difference between the OP and TP groups was statistically significant. Further load-displacement analyses corroborated the higher mechanical stability of the TP abutments. Conclusion: Superior resistance was achieved for two-piece hybrid CAD/CAM zirconia abutments. These abutments might be clinically beneficial in high-load areas, such as premolar and molar regions.
机译:目的:出于美学原因,全陶瓷基台越来越多地用于种植牙学中。需要进行体外应力测试以评估这些结构的适用性,尤其是在承重的后部区域。该研究的目的是评估和比较具有内六角连接和预制的商用氧化锆的两件式和两件式计算机辅助设计/计算机辅助制造(CAD / CAM)氧化锆种植体基台的疲劳强度和断裂强度库存基台。材料和方法:为三个测试组准备了21个基台冠冠标本。对照组1(SZ)包括带有未准备好的氧化锆基台的标本,测试组2(OP)包括一件式CAD / CAM氧化锆基台,测试组3(TP)包括两件式CAD / CAM氧化锆基台。所有21个样品都进行了热循环和疲劳测试。最后,使用通用测试机测试所有样品的抗断裂性。将最大载荷以30度角和0.5 mm / min的十字头速度施加到每个牙冠的锥形咬合区域,直到种植体-基台连接失败。统计分析使用Kolmogorov-Smirnov,Shapiro-Wilk和事后Scheffe检验。结果:经过抗断裂性测试后,SZ和OP组的所有基台均断裂为两块或更多块。 TP基台都没有显示出明显的崩解,但是通过固定螺钉的弯曲证明了其失败。 OP基台(232.1 +/- 29.8 N)和SZ基台(251.8 +/- 23.2 N)的断裂载荷低于TP基台(291.4 +/- 27.8 N)。但是,只有OP组和TP组之间的差异具有统计学意义。进一步的载荷-位移分析证实了TP基台的更高的机械稳定性。结论:两件式混合CAD / CAM氧化锆基台获得了优异的抵抗力。这些基台在高负荷区域(例如前磨牙和磨牙区域)可能对临床有益。

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