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首页> 外文期刊>The International journal of prosthodontics >Effects of Cement, Abutment Surface Pretreatment, and Artificial Aging on the Force Required to Detach Cantilever Fixed Dental Prostheses from Dental Implants
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Effects of Cement, Abutment Surface Pretreatment, and Artificial Aging on the Force Required to Detach Cantilever Fixed Dental Prostheses from Dental Implants

机译:水泥,邻接表面预处理和人工老化对牙科植入物拆下悬臂固定的牙科假体所需的力的影响

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Purpose: To examine the in vitro effects of different cements, abutment surface preconditioning, and artificial aging on the maximum tensile force needed to detach cantilever fixed dental prostheses (FDPs) from dental implants with titanium abutments. Materials and Methods: A total of 32 tissue-level implants were combined with standardized titanium abutments. For each test group, eight cantilever FDPs were fabricated using selective laser melting (cobalt chromium [CoCr] alloy). The inner surfaces of the cantilever FDPs and half of the abutments were sandblasted and then joined by use of four different cements (two permanent and two semi-permanent) in two different amounts per cement. Subgroups were tested after either artificial aging (thermocycling and chewing simulation) or 3 days of water storage. Finally, axial pull off-tests were performed for each abutment separately. Results: Cement type and surface pretreatment significantly affected decementation behavior. The highest retention forces (approximately 1,200 N) were associated with sandblasted abutments and permanent cements. With unconditioned abutments, temporary cements (Fu < 100 N), as well as glassionomer cement (F-u approximate to 100 N), resulted in rather low retention forces. Zinc phosphate cement guaranteed high retention forces. After aging, retention was sufficient only for cementation with zinc phosphate cement and for the combination of sandblasted abutments and glass-ionomer cement. Conclusion: When glass-ionomer cement is used to fix cantilever FDPs on implants, sandblasting of standard titanium abutments may help prevent loss of retention. Retention forces were still high for FDPs fixed with zinc phosphate cement, even when the abutments were not pretreated. Use of permanent cements only, however, is recommended to prevent unwanted loosening of cantilever FDPs.
机译:目的:检查不同水泥,邻接表面预处理和人工老化的体外效果对钛基台的牙科植入物分离悬臂固定牙科假体(FDP)所需的最大拉力。材料和方法:将32种组织级植入物与标准化的钛基台结合。对于每个测试组,使用选择性激光熔化(钴铬[Cocrog]合金)制造八个悬臂FDP。悬臂FDP的内表面和一半的基台被喷砂,然后通过使用每水泥两种不同量的四种不同的水泥(两个永久性和两个半永久性)连接。在人工老化(热循环和咀嚼模拟)或3天的储水后测试亚组。最后,分别对每个基台进行轴向拉出脱离测试。结果:水泥型和表面预处理显着影响了较大的数量行为。最高保留力(约1,200n)与喷砂基托管和永久性水泥有关。对于无条件的基台,临时水泥(Fu <100n)以及玻璃聚合物水泥(F-U近似为100n),导致保持力相当低。磷酸锌水泥保证了高保留力。衰老后,保留足以用于磷酸锌水泥的胶结,并且用于凝胶脱落和玻璃离聚物水泥的组合。结论:当使用玻璃离聚物水泥在植入物上固定悬臂FDP时,标准钛基台的喷砂可能有助于防止保留损失。对于用磷酸锌水泥固定的FDP,保留力仍然高,即使当邻接性没有预处理时,FDP也适用于固定的FDP。然而,建议使用永久性水泥来防止悬臂FDP的不需要的松动。

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