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首页> 外文期刊>The Journal of Prosthetic Dentistry >Load-fatigue performance of gold crowns luted with resin cements.
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Load-fatigue performance of gold crowns luted with resin cements.

机译:用树脂水泥粘结的金冠的疲劳疲劳性能。

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STATEMENT OF PROBLEM: Resin cements have gained popularity over the past few years because of their improved physical properties. There is a need to test these cements under fatigue loading, as there is growing recognition that fatigue testing is more clinically relevant than traditional monotonic static tests. PURPOSE: This study investigated the load-fatigue performance of complete gold crowns cemented with 4 types of resin cement. MATERIAL AND METHODS: Four resin cements (C & B Opaque [CBO], Calibra Esthetic [CE], RelyX Unicem [RU], and Panavia F [PF]) and a control, zinc phosphate cement (HY-Bond [HBZPC]) were tested. Fifty human maxillary premolars were prepared to an occluso-cervical dimension of 4 mm and a convergence angle of 20 degrees. Complete gold crowns were cast (Strator 3) and cemented with 1 of the 5 cements (n=10). A fatigue load of 73.5 N was applied at an angle of 135 degrees to the long axis of each tooth-crown specimen. Preliminary failure was defined as the propagation of a crack in or around the crown luting cement layer. The number of cycles to preliminary failure and the cement failure location were determined. Significant differences in cycles to preliminary failure were assessed by the nonparametric Kruskal-Wallis test, with follow-up Mann-Whitney tests (alpha=.05). RESULTS: Group CE had the highest rank of cycles to preliminary failure, while HBZPC had the lowest cycles to preliminary failure. Group CE had a significantly higher failure cycle count compared to PF (P=.016), RU (P=.001), and HBZPC (P<.001), but was not significantly different from CBO (P=.112). There was no significant difference in the failure cycle count between RU and HBZPC (P=.070). CONCLUSION: Not all tested resin cements had a superior fatigue life when compared with zinc phosphate cement. Of the 4 resin cement groups, Groups CE, CBO, and PF were significantly superior to HBZPC.
机译:问题陈述:树脂水泥由于其改善的物理性能而在过去几年中受到欢迎。有必要在疲劳载荷下测试这些水泥,因为人们越来越认识到,疲劳测试在临床上比传统的单调静态测试更为重要。目的:本研究研究了用4种类型的树脂胶粘剂粘结的完整金冠的载荷-疲劳性能。材料和方法:四种树脂水泥(C和B不透明[CBO],Calibra Esthetic [CE],RelyX Unicem [RU]和Panavia F [PF])和对照磷酸锌水泥(HY-Bond [HBZPC])经过测试。准备五十个人类上颌前磨牙,使其咬合宫颈尺寸为4 mm,会聚角为20度。铸造完整的金冠(策略3),并用5种胶结剂中的1种胶结(n = 10)。对每个牙冠样本的长轴以135度的角度施加73.5 N的疲劳载荷。初步破坏的定义是,在胎冠胶合水泥层中或周围的裂纹扩展。确定了初步破坏的周期数和水泥破坏位置。通过非参数Kruskal-Wallis检验和后续的Mann-Whitney检验(alpha = .05),评估了至初步失败的周期之间的显着差异。结果:CE组发生初步衰竭的周期最高,而HBZPC发生初步失败的周期最低。与PF(P = .016),RU(P = .001)和HBZPC(P <.001)相比,CE组的故障循环数明显更高,但与CBO的差异无统计学意义(P = .112)。 RU和HBZPC之间的故障循环计数没有显着差异(P = .070)。结论:与磷酸锌水泥相比,并非所有测试的树脂水泥都具有优异的疲劳寿命。在4组树脂水泥中,CE,CBO和PF组明显优于HBZPC。

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