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支持前牙三单位二硅酸锂固定义齿的直形和角度形氧化锆种植体基台的抗折性

Fracture Resistance of Straight and Angulated Zirconia Implant Abutments Supporting Anterior Three-Unit Lithium Disilicate Fixed Dental Prostheses.

作者信息

Saker Samah, El-Shahat Sameh, Ghazy Mohamed

出版信息

Int J Oral Maxillofac Implants. 2016 Nov/Dec;31(6):1240-1246. doi: 10.11607/jomi.4131.

Abstract

PURPOSE

The purpose of this study was to evaluate fracture resistance of straight and angulated zirconia implant abutments supporting anterior three-unit lithium disilicate fixed dental prostheses (FDPs).

MATERIALS AND METHODS

Four different test groups (n = 8) representing anterior three-unit implant-supported all-ceramic FDPs were fabricated to fit an in vitro model with two implants. Groups 1 and 2 simulated a clinical situation with an ideal implant position for maxillary left central and right lateral incisors from a prosthetic point of view, which allowed for the use of a straight, prefabricated zirconia and titanium abutment. Groups 3 and 4 simulated a situation with a compromised implant position that required an angulated (15-degree) abutment. Tapered internal-connection implants (Direct's Legacy, 13-mm length, 3.7-mm diameter, Implant Direct) mounted in epoxy resin models were used in this study. Lithium disilicate (IPS e.max press, Ivoclar Vivadent) three-unit FDPs were fabricated and cemented using self-adhesive resin cement. The samples were subjected to thermocycling (2 × 3,000 × 5°C/55°C) and mechanical loading (TCML; 50 N × 600,000 cycles). Fracture resistances were determined for all the samples that survived aging. Kruskal-Wallis analysis of variance and Mann-Whitney U tests were performed to test for differences in fracture strength values at a 5% significance level.

RESULTS

All samples subjected to TCML survived without mechanical failure. The highest fracture loads were associated with FDPs supported by implants with 0-degree abutment angulations compared with those FDPs supported by 15-degree abutment angulations (group 1: 538.7 ± 24.77 N; group 2: 542.17 ± 21.64 N; group 3: 523.57 ± 19.71 N; group 4: 528.37 ± 24.57 N). This difference in load-bearing capacity was not statistically significant (P > .05).

CONCLUSION

The use of angulated zirconia abutments for compensation of nonideal implant locations is possible without reducing the load-bearing capacity of implant-supported anterior three-unit lithium disilicate FDPs.

摘要

目的

本研究旨在评估支持前牙区三单位二硅酸锂固定义齿(FDPs)的直形和角度形氧化锆种植基台的抗折性能。

材料与方法

制作四个不同的测试组(n = 8),代表前牙区三单位种植支持式全瓷FDPs,以适配带有两颗种植体的体外模型。第1组和第2组从修复角度模拟上颌左中切牙和右侧切牙种植体位置理想的临床情况,这允许使用直形、预制的氧化锆和钛基台。第3组和第4组模拟种植体位置不佳需要角度形(15度)基台的情况。本研究使用安装在环氧树脂模型中的锥形内连接种植体(Direct's Legacy,长度13 mm,直径3.7 mm,种植体Direct)。制作二硅酸锂(IPS e.max press,义获嘉伟瓦登特)三单位FDPs,并使用自粘树脂水门汀粘结。样本进行热循环(2×3,000次,5°C/55°C)和机械加载(TCML;50 N×600,000次循环)。测定所有经老化后存活样本的抗折性能。进行Kruskal-Wallis方差分析和Mann-Whitney U检验,以在5%显著性水平下检验抗折强度值的差异。

结果

所有接受TCML的样本均存活且无机械故障。与15度基台角度支持的FDPs相比,0度基台角度种植体支持的FDPs具有最高的抗折载荷(第1组:538.7±24.77 N;第2组:542.17±21.64 N;第3组:523.57±19.71 N;第4组:528.37±24.57 N)。这种承载能力的差异无统计学意义(P>.05)。

结论

使用角度形氧化锆基台补偿种植体位置不理想的情况是可行的,且不会降低种植支持的前牙区三单位二硅酸锂FDPs的承载能力。

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