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老化后支持全瓷冠的氧化锆和钛种植体基台的弯矩

Bending moments of zirconia and titanium implant abutments supporting all-ceramic crowns after aging.

作者信息

Mühlemann Sven, Truninger Thomas C, Stawarczyk Bogna, Hämmerle Christoph H F, Sailer Irena

机构信息

Clinic of Fixed and Removable Prosthodontics and Dental Material Science, Center of Dental Medicine, University of Zurich, Zurich, Switzerland.

出版信息

Clin Oral Implants Res. 2014 Jan;25(1):74-81. doi: 10.1111/clr.12192. Epub 2013 Jun 4.

Abstract

OBJECTIVES

To test the fracture load and fracture patterns of zirconia abutments restored with all-ceramic crowns after fatigue loading, exhibiting internal and external implant-abutment connections as compared to restored and internally fixed titanium abutments.

MATERIALS AND METHODS

A master abutment was used for the customization of 5 groups of zirconia abutments to a similar shape (test). The groups differed according to their implant-abutment connections: one-piece internal connection (BL; Straumann Bonelevel), two-piece internal connection (RS; Nobel Biocare ReplaceSelect), external connection (B; Branemark MkIII), two-piece internal connection (SP, Straumann StandardPlus) and one-piece internal connection (A; Astra Tech AB OsseoSpeed). Titanium abutments with internal implant-abutment connection (T; Straumann Bonelevel) served as control group. In each group, 12 abutments were fabricated, mounted to the respective implants and restored with glass-ceramic crowns. All samples were embedded in acrylic holders (ISO-Norm 14801). After aging by means of thermocycling in a chewing simulator, static load was applied until failure (ISO-Norm 14801). Fracture load was analyzed by calculating the bending moments. Values of all groups were compared with one-way ANOVA followed by Scheffé post hoc test (P-value<0.05). Failure mode was analyzed descriptively.

RESULTS

The mean bending moments were 464.9 ± 106.6 N cm (BL), 581.8 ± 172.8 N cm (RS), 556.7 ± 128.4 N cm (B), 605.4 ± 54.7 N cm (SP), 216.4 ± 90.0 N cm (A) and 1042.0 ± 86.8 N cm (T). No difference of mean bending moments was found between groups BL, RS, B and SP. Test group A exhibited significantly lower mean bending moment than the other test groups. Control group T had significantly higher bending moments than all test groups. Failure due to fracture of the abutment and/or crown occurred in the test groups. In groups BL and A, fractures were located in the internal part of the connection, whereas in groups RS and SP, a partial deformation of the implant components occurred and cracks and fractures of the zirconia abutment were detected.

CONCLUSION

The differently connected zirconia abutments exhibited similar bending moments with the exception of one group. Hence, the type of connection only had a minor effect on the stability of restored zirconia abutments. In general, restored titanium abutments exhibited the highest bending moments.

摘要

目的

测试在疲劳加载后用全瓷冠修复的氧化锆基台的断裂载荷和断裂模式,与修复并内部固定的钛基台相比,这些氧化锆基台具有内部和外部种植体-基台连接方式。

材料与方法

使用一个标准基台定制5组形状相似的氧化锆基台(测试组)。这些组根据其种植体-基台连接方式不同而有所差异:一体式内部连接(BL;士卓曼骨水平型)、两件式内部连接(RS;诺贝尔生物科技ReplaceSelect)、外部连接(B;Branemark MkIII)、两件式内部连接(SP,士卓曼标准增强型)和一体式内部连接(A;阿斯利康科技AB OsseoSpeed)。具有内部种植体-基台连接的钛基台(T;士卓曼骨水平型)作为对照组。每组制作12个基台,安装到各自的种植体上并用玻璃陶瓷冠修复。所有样本嵌入丙烯酸固定架中(ISO标准14801)。在咀嚼模拟器中通过热循环进行老化后,施加静态载荷直至破坏(ISO标准14801)。通过计算弯矩分析断裂载荷。所有组的值采用单因素方差分析,随后进行Scheffé事后检验进行比较(P值<0.05)。对破坏模式进行描述性分析。

结果

平均弯矩分别为464.9±106.6N·cm(BL)、581.8±172.8N·cm(RS)、556.7±128.4N·cm(B)、605.4±54.7N·cm(SP)、216.4±90.0N·cm(A)和1042.0±86.8N·cm(T)。BL、RS、B和SP组之间未发现平均弯矩有差异。测试组A的平均弯矩显著低于其他测试组。对照组T的弯矩显著高于所有测试组。测试组中发生了基台和/或牙冠断裂导致的破坏。在BL组和A组中,断裂位于连接的内部部分,而在RS组和SP组中,种植体部件出现部分变形,并检测到氧化锆基台的裂纹和断裂。

结论

除一组外,不同连接方式的氧化锆基台表现出相似的弯矩。因此,连接方式对修复后的氧化锆基台稳定性的影响较小。总体而言,修复后的钛基台表现出最高的弯矩。

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