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首页> 外文期刊>The International journal of oral & maxillofacial implants >Axial displacement of abutments into implants and implant replicas, with the tapered cone-screw internal connection, as a function of tightening torque.
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Axial displacement of abutments into implants and implant replicas, with the tapered cone-screw internal connection, as a function of tightening torque.

机译:基台在种植体和种植体复制品中的轴向位移,以及锥形锥形螺钉内部连接,是紧固扭矩的函数。

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PURPOSE: The passive fit of a superstructure on implant abutments is essential to success. One source of error when using a tapered cone-screw internal connection may be the difference between the tightening torque level applied to the abutments by the laboratory technician compared to that applied by the treating clinician. The purpose of this study was to measure the axial displacement of tapered cone-screw abutments into implants and their replicas as a function of the tightening torque level. MATERIALS AND METHODS: Twenty tapered cone-screw abutments were selected. Two groups were created: 10 abutments were secured into 10 implants, and 10 abutments were secured into 10 corresponding implant replicas. Each abutment was tightened in increasing increments of 5 Ncm, from 0 Ncm to 45 Ncm, with a torque controller. The length of each sample was measured repeatedly with an Electronic Digital Micrometer. The mean axial displacement for the implant group and the replica group was calculated. The data were analyzed by the Mann-Whitney and Spearman tests. RESULTS: For both groups, there was always an axial displacement of the abutment upon each incremental application of torque. The mean axial displacement values varied between 7 and 12 microm for the implant group and between 6 and 21 microm for the replica group at each 5-Ncm increment. From 0 to 45 Ncm, the total mean axial displacement values were 89 microm for the implant group and 122 microm for the replica group. CONCLUSION: There was a continuous axial displacement of the abutments into implants and implant replicas when the applied torque was raised from 0 to 45 Ncm. Torque applied above the level recommended by the manufacturer increased the difference in displacement between the two groups.
机译:目的:将上层结构被动配合在种植体基台上对于成功至关重要。使用锥形圆锥螺钉内部连接时的一种错误来源可能是与由治疗医生所施加的扭矩相比,实验室技术人员施加于基台的紧固扭矩水平之间的差异。这项研究的目的是测量锥形锥形螺丝基台到种植体及其复制物中的轴向位移,该轴向位移是拧紧扭矩水平的函数。材料与方法:选择了二十个锥形圆锥螺钉基台。创建两组:将10个基台固定到10个植入物中,将10个基台固定到10个相应的植入物复制品中。用扭矩控制器将每个基台以5 Ncm的增量从0 Ncm增大到45 Ncm拧紧。用电子数字测微计重复测量每个样品的长度。计算植入物组和复制品组的平均轴向位移。通过Mann-Whitney和Spearman检验分析数据。结果:对于两组,每次增加扭矩施加时,基台始终存在轴向位移。对于植入物组,平均轴向位移值在每5 Ncm增量处在7到12微米之间变化,而对于复制品组在6到21微米之间变化。从0到45 Ncm,植入物组的总平均轴向位移值为89微米,复制组的总平均轴向位移值为122微米。结论:当施加的扭矩从0 Ncm升至45 Ncm时,基台进入植入物和植入物复制品的轴向连续位移。在制造商建议的水平之上施加的扭矩会增加两组之间的位移差。

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