基台设计对种植体粘接金属冠固位的影响。

Acta Biomaterialia Odontologica Scandinavica Pub Date : 2016-01-26 eCollection Date: 2016-12-01 DOI:10.3109/23337931.2015.1135748
Albano Porto da Cunha, Glauco Pereira Moysés, Ana Christina Claro Neves, Rafael Pino Vitti, Flávia Cardoso da Rosa Goulart, Laís Regiane da Siva-Concílio
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摘要

目的探讨基台设计对种植体胶结金属冠固位的影响。材料与方法采用不同的设计方法,对同一系统中具有相同适应症、高度和咬合总收敛度的2个基牙进行评价。10个RN synnocta基台(Straumann, Waltham, MA)和10个RN钛固体基台(Straumann, Waltham, MA)在先前放置在树脂块中的20个种植体类似物上拧紧至35 Ncm。20个塑料燃尽涂层由一个操作员进行打蜡、浇铸和机加工。使用10倍放大的体视显微镜检查顶部表面是否不规则,然后在5 kg载荷下粘合(Temp Bond NE, Kerr, Romulus, MI) 10分钟。样品在室温和100%湿度下保存24小时,然后以0.5 mm/min的十字头速度进行拉出测试。记录拆除每个顶盖所需的载荷(kgf),并统计计算每组的平均值。失效载荷的均值和标准差采用学生t检验进行分析。结果synOcta基台的平均负荷(11.19 kgf)明显高于固体基台(10.18 kgf)。结论:基台设计对金属冠的固位有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Influence of abutment design on retention of metal copings cemented to implants.

Objective The study evaluated the influence of abutment design on the retention of implant-cemented metal copings. Material and methods Two abutments of the same system with the same indications, height and the total occlusal convergence, but of different designs were evaluated. Ten RN synOcta abutments (Straumann, Waltham, MA) and ten RN titanium solid abutments (Straumann, Waltham, MA) were tightened to 35 Ncm on 20 implant analogs previously placed in resin blocks. Twenty plastic burnout copings were waxed, included, cast and machined by a single operator. Coping was inspected for surface irregularities using a stereomicroscope at 10x magnification, and then, they were cemented (Temp Bond NE, Kerr, Romulus, MI) with 5 kg load for 10 min. The samples were stored for 24 h in room temperature and 100% humidity and then subjected to pull-out test at a crosshead speed of 0.5 mm/min. The load required to dislodge each coping was recorded (kgf) and and mean values for each group statistically calculated. Means and standard deviations of loads at failure were analyzed using Student's t-test. Results The mean load required to dislodge the copings showed by synOcta abutments (11.19 kgf) was statiscally higher than s solid abutments (10.18 kgf). Conclusions: It was concluded that the abutment design influenced significantly the retention of metal copings.

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