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基台预备及在潮湿环境中疲劳加载对一体式氧化锆牙种植体抗折性的影响

Effect of Abutment Preparation and Fatigue Loading in a Moist Environment on the Fracture Resistance of the One-Piece Zirconia Dental Implant.

作者信息

Kamel Mohamed, Vaidyanathan Tritala K, Flinton Robert

出版信息

Int J Oral Maxillofac Implants. 2017 May/Jun;32(3):533-540. doi: 10.11607/jomi.5077.

Abstract

PURPOSE

One-piece zirconia dental implants have been widely used in Europe for many years. This in vitro study was done to evaluate the effect of abutment preparation and fatigue (cyclic) loading in a moist environment on the fracture resistance of the one-piece zirconia dental implant.

MATERIALS AND METHODS

Twenty-four Cera Root zirconium oxide dental implants, divided into three groups of eight, were used in this study: group 1 (control group): implants with no preparation, tested in a dry environment; group 2: implants with no preparation, tested in a moist environment (simulating clinical conditions); and group 3: implants after abutment preparation tested in a moist environment. All implants received IPS e.max porcelain crowns. All samples were subjected to nearly 1 million cycles of sinusoidal fatigue loading (-10 N to -200 N) in a universal testing machine. The postfatigue samples were loaded to fracture. Significant differences (α = .05) in mean fracture loads were statistically analyzed.

RESULTS

There was no catastrophic failure of any of the implants during the fatigue tests. The mean (SD) of the fracture loads in postfatigue load-to-failure tests were: group 1: 1,202.9 (62.6); group 2: 1,164.6 (73.8); and group 3: 953.5 (103). Analysis of variance (ANOVA) and post hoc Tukey-Kramer contrast revealed a statistically significant difference (P < .05) between the mean fracture load of group 3 and those of groups 1 and 2, but no significant difference (P > .05) between groups 1 and 2.

CONCLUSION

While there was a statistically significant adverse effect of abutment preparation and fatigue loading in a moist environment on the postfatigue implant failure load, the load-to-fracture mean of surface-prepared implants after fatigue tests was nevertheless significantly higher than the mean fracture load of the crowns (P < .05) as well as the minimum load-bearing requirement (300 N) for anterior restorations. Abutment preparation in a one-piece zirconia implant is therefore considered clinically safe and acceptable.

摘要

目的

一体式氧化锆牙种植体在欧洲已广泛应用多年。本体外研究旨在评估基台预备及在潮湿环境中的疲劳(循环)加载对一体式氧化锆牙种植体抗折性的影响。

材料与方法

本研究使用了24颗Cera Root氧化锆牙种植体,分为三组,每组8颗:第1组(对照组):未进行预备的种植体,在干燥环境中测试;第2组:未进行预备的种植体,在潮湿环境中测试(模拟临床情况);第3组:进行基台预备后的种植体,在潮湿环境中测试。所有种植体均安装IPS e.max烤瓷冠。所有样本在万能试验机中承受近100万次正弦疲劳加载(-10 N至-200 N)。疲劳试验后的样本加载至断裂。对平均断裂载荷的显著差异(α = 0.05)进行统计分析。

结果

在疲劳试验期间,没有任何种植体发生灾难性失效。疲劳后加载至断裂试验中,断裂载荷的平均值(标准差)为:第1组:1202.9(62.6);第2组:1164.6(73.8);第3组:953.5(103)。方差分析(ANOVA)和事后Tukey-Kramer对比显示,第3组的平均断裂载荷与第1组和第2组之间存在统计学显著差异(P < 0.05),但第1组和第2组之间无显著差异(P > 0.05)。

结论

虽然在潮湿环境中进行基台预备和疲劳加载对疲劳后种植体的失效载荷有统计学显著的不利影响,但疲劳试验后表面预备种植体的断裂平均载荷仍显著高于牙冠的平均断裂载荷(P < 0.05)以及前牙修复的最小承重要求(300 N)。因此,一体式氧化锆种植体的基台预备在临床上被认为是安全且可接受的。

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