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种植体支持的整体式二硅酸锂全冠的硬度、强度及失效模式:钛基台和氧化锆基台的影响

Stiffness, strength, and failure modes of implant-supported monolithic lithium disilicate crowns: influence of titanium and zirconia abutments.

作者信息

Joda Tim, Bürki Alexander, Bethge Stefan, Brägger Urs, Zysset Philippe

出版信息

Int J Oral Maxillofac Implants. 2015 Nov-Dec;30(6):1272-9. doi: 10.11607/jomi.3975.

Abstract

PURPOSE

The objective of this study was to evaluate stiffness, strength, and failure modes of monolithic crowns produced using computer-aided design/computer-assisted manufacture, which are connected to diverse titanium and zirconia abutments on an implant system with tapered, internal connections.

MATERIALS AND METHODS

Twenty monolithic lithium disilicate (LS2) crowns were constructed and loaded on bone level-type implants in a universal testing machine under quasistatic conditions according to DIN ISO 14801. Comparative analysis included a 2 × 2 format: prefabricated titanium abutments using proprietary bonding bases (group A) vs nonproprietary bonding bases (group B), and customized zirconia abutments using proprietary Straumann CARES (group C) vs nonproprietary Astra Atlantis (group D) material. Stiffness and strength were assessed and calculated statistically with the Wilcoxon rank sum test. Cross-sections of each tested group were inspected microscopically.

RESULTS

Loaded LS2 crowns, implants, and abutment screws in all tested specimens (groups A, B, C, and D) did not show any visible fractures. For an analysis of titanium abutments (groups A and B), stiffness and strength showed equally high stability. In contrast, proprietary and nonproprietary customized zirconia abutments exhibited statistically significant differences with a mean strength of 366 N (Astra) and 541 N (CARES) (P < .05); as well as a mean stiffness of 884 N/mm (Astra) and 1,751 N/mm (CARES) (P < .05), respectively. Microscopic cross-sections revealed cracks in all zirconia abutments (groups C and D) below the implant shoulder.

CONCLUSION

Depending on the abutment design, prefabricated titanium abutment and proprietary customized zirconia implant-abutment connections in conjunction with monolithic LS2 crowns had the best results in this laboratory investigation.

摘要

目的

本研究的目的是评估使用计算机辅助设计/计算机辅助制造生产的整体式牙冠的刚度、强度和失效模式,这些牙冠与具有锥形内部连接的种植系统上的各种钛和氧化锆基台相连。

材料与方法

制作了20个整体式二硅酸锂(LS2)牙冠,并根据DIN ISO 14801在万能试验机中在准静态条件下加载到骨水平型种植体上。比较分析采用2×2形式:使用专有粘结基底的预制钛基台(A组)与非专有粘结基底(B组),以及使用专有Straumann CARES的定制氧化锆基台(C组)与非专有Astra Atlantis(D组)材料。使用Wilcoxon秩和检验对刚度和强度进行评估并进行统计学计算。对每个测试组的横截面进行显微镜检查。

结果

所有测试样本(A、B、C和D组)中加载的LS2牙冠、种植体和基台螺钉均未出现任何可见骨折。对于钛基台(A组和B组)的分析,刚度和强度显示出同样高的稳定性。相比之下,专有和非专有定制氧化锆基台在统计学上存在显著差异,平均强度分别为366 N(Astra)和541 N(CARES)(P <.05);平均刚度分别为884 N/mm(Astra)和1751 N/mm(CARES)(P <.05)。显微镜下的横截面显示,所有氧化锆基台(C组和D组)在种植体肩部下方均出现裂缝。

结论

在本实验室研究中,根据基台设计,预制钛基台和专有定制氧化锆种植体-基台连接与整体式LS2牙冠结合使用时效果最佳。

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