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首页> 外文期刊>Dental Research Journal >Reverse torque evaluation in indexed and nonindexed abutments of Morse Taper implants in a mechanical fatigue test
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Reverse torque evaluation in indexed and nonindexed abutments of Morse Taper implants in a mechanical fatigue test

机译:机械疲劳测试中莫氏锥度植入物的分度和非分度基台的反向扭矩评估

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Background: This experimental study assessed reverse torque of indexed and nonindexed (NI) abutments in Morse Taper (MT) implants in a mechanical fatigue test. Materials and Methods: In this experimental study It was used 37 implants MT and over them installed Pilar Flex abutments (4.8 mm × 6 mm × 1.5 mm). The groups were as follows: Group A used 19 MT implants with a NI Pilar Flex abutment loaded with 32 N/cm and Group B used 18 MT implants with an indexed (IN) Pilar Flex abutment loaded with 20 N/cm. The abutments were tested according to ISO standard 14801/2007. The specimens were installed at 30° from the axial axis and underwent a 133 N load, 4 Hz frequency, and 1,000,000 cycles. Once the test was completed, the reverse torque was provided by an electronic torque meter. Data were submitted to statistical analysis using the t?test for independent samples and paired t?test. The significance level was considered P 0.05. Results: Results obtained showed that the indexed Pilar Flex abutment had a percentage of torque loss from the initial torque of 49% and the NI Pilar Flex abutment lost 14%. Paired Student’s t?tests revealed that for both NI (P 0.001) and indexed (P 0.001) abutments, the counter torque values were significantly lower than those applied at the initial torque. Conclusion: According on the methodology used, the NI Pilar Flex abutment was more effective regarding the reverse torque in single?unit implant prostheses versus the indexed Pilar Flex abutment. A greater loosening in the indexed Pilar Flex abutment retaining screw was noted in the reverse torque test, and the Pilar Flex abutment failed to show good outcomes related to the cold welding effect.
机译:背景:这项实验研究通过机械疲劳测试评估了莫氏锥度(MT)种植体中分度和非分度(NI)基台的反向扭矩。材料和方法:在本实验研究中,使用了37个MT种植体,并在其上安装了Pilar Flex基台(4.8 mm×6 mm×1.5 mm)。各组如下:A组使用19 MT种植体,NI Pilar Flex基台负载32 N / cm,B组使用18 MT种植体,索引(IN)Pilar Flex基台负载20 N / cm。基台根据ISO标准14801/2007进行了测试。将样品安装在离轴30°的位置,并承受133 N负载,4 Hz频率和1,000,000次循环。测试完成后,由电子扭矩仪提供反向扭矩。使用独立样本的t检验和配对t检验将数据提交至统计分析。显着性水平被认为是P <0.05。结果:获得的结果表明,分度旋转的Pilar Flex基台从初始扭矩中损失了49%的扭矩,而NI Pilar Flex基台损失了14%。配对学生t检验显示,对于NI(P <0.001)和分度(P <0.001)基台,反扭矩值明显低于初始扭矩。结论:根据所使用的方法,相对于分度的Pilar Flex基台,NI Pilar Flex基台在单单元假体修复中的反向扭矩方面更有效。在反向扭矩测试中,已转位的Pilar Flex基台固定螺丝出现了更大的松动,并且Pilar Flex基台未能显示出与冷焊效果相关的良好结果。

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