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首页> 外文期刊>The International journal of oral & maxillofacial implants >Critical bending moment of four implant-abutment interface designs.
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Critical bending moment of four implant-abutment interface designs.

机译:四种种植体-基台界面设计的临界弯矩。

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PURPOSE: Critical bending moment (CBM), defined as the bending moment at which the external nonaxial load applied overcomes screw joint preload and causes loss of contact between the mating surfaces of the implant screw joint components, was measured for four different implants and their single-tooth replacement abutments. MATERIALS AND METHODS: CBM at the implant-abutment screw joint for four implant-abutment test groups was measured in vitro at 80%, 100%, and 120% of the manufacturers' recommended torque levels. Regular-platform implants with their corresponding single-tooth abutments were used. Microstrain was measured while known loads were applied to the abutment at known distances from the implant-abutment interface. Strain instrumentation was used to record the strain data dynamically to determine the point of gap opening. All torque applications and strain measurements were repeated five times for the five samples in each group. RESULTS: For the Branemark/CeraOne assemblies, the mean CBMs were 72.14 Ncm, 102.21 Ncm, and 119.13 Ncm, respectively, at 80%, 100%, and 120% of the manufacturer's recommended torque. For the Replace/Easy assemblies, mean CBMs were 86.20 Ncm, 109.92 Ncm, and 120.93 Ncm; for the Biomet 3i/STA assemblies, they were 67.97 Ncm, 83.14 Ncm, and 91.81 Ncm; and for the Lifecore/COC assemblies, they were 58.32 Ncm, 76.79 Ncm, and 78.93 Ncm. Two-way analysis of variance revealed significant effects for the test groups and torque levels. Subsequent tests confirmed that significant differences existed between test groups and torque levels. CONCLUSION: The results appear to confirm the primary role of the compressive preload imparted by the abutment screw in maintaining screw joint integrity. CBM was found to differ among implant systems and torque levels. Torque levels recommended by the manufacturer should be followed to ensure screw joint integrity.
机译:用途:临界弯曲力矩(CBM)定义为对四种不同的植入物及其单个植入物进行测量的弯曲力矩,在该弯曲力矩下,施加的外部非轴向载荷克服了螺丝接头的预紧力并导致了植入物螺丝接头组件的配合面之间失去接触。 -牙齿替换基台。材料与方法:在四个种植体-基台测试组的种植体-基台螺钉接头处的煤层气,在体外分别以制造商建议的扭矩水平的80%,100%和120%进行了测量。使用具有相应单齿基台的常规平台植入物。在从种植体-基台界面以已知距离向基台施加已知载荷的同时测量微应变。应变仪器用于动态记录应变数据,以确定间隙的开放点。对于每组五个样品,所有扭矩施加和应变测量重复五次。结果:对于Branemark / CeraOne组件,在制造商推荐扭矩的80%,100%和120%时,平均CBM分别为72.14 Ncm,102.21 Ncm和119.13 Ncm。对于“替换/轻松”组件,平均CBM为86.20 Ncm,109.92 Ncm和120.93 Ncm;对于Biomet 3i / STA组件,分别为67.97 Ncm,83.14 Ncm和91.81 Ncm;对于Lifecore / COC组件,它们分别为58.32 Ncm,76.79 Ncm和78.93 Ncm。方差的双向分析揭示了对测试组和扭矩水平的显着影响。随后的测试证实,测试组和扭矩水平之间存在显着差异。结论:结果似乎证实了基台螺钉施加的压缩预紧力在保持螺钉接头完整性方面的主要作用。发现在植入物系统和扭矩水平之间,CBM存在差异。应遵循制造商建议的扭矩水平,以确保螺钉接头的完整性。

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