彩色和非彩色高半透明氧化锆三单元固定义齿框架的断裂载荷。

Acta Biomaterialia Odontologica Scandinavica Pub Date : 2018-04-04 eCollection Date: 2018-01-01 DOI:10.1080/23337931.2018.1459626
Deyar Jallal Hadi Mahmood, Michael Braian, Abdul-Salam Khan, Armin Shabaz, Christel Larsson
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引用次数: 5

摘要

目的:使用彩色半透明的氧化锆可以使修复比以前不透明的白色氧化锆更自然的牙齿样外观。然而,从有色氧化锆到有色氧化锆的转变可能会带来强度降低的风险。本研究的目的是比较有色半透明氧化锆固定义齿框架与非有色对照的断裂载荷和断裂模式。方法:采用两种不同的高半透明氧化锆材料(Zenostar, Wieland Dental和DD cubeX2, Dental direckt)制作共43个单元的FDP框架。每个组包含两个子组,一个有色组和一个非有色组。在最终烧结前使用两种不同的渗透技术进行着色。所有FDPs都经历了热处理、热循环和预加载等人工老化过程,然后试样承受载荷直至断裂。记录断裂载荷和断裂模式。结果:对于一种氧化锆材料Zenostar,在另一种氧化锆材料DD cubeX2中,有色框架与有色框架之间的断裂载荷显著高于有色框架(p p > 0.05)。所有fdp通过连接器断裂。有些骨折穿过接头的中端,有些穿过接头的远端,但两组之间的骨折方式无显著差异。结论:高半透明氧化锆烧结前着色可以降低某些材料和工艺的FDP框架的断裂载荷。然而,骨折模式似乎不受影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fracture load of colored and non-colored high translucent zirconia three-unit fixed dental prosthesis frameworks.

Fracture load of colored and non-colored high translucent zirconia three-unit fixed dental prosthesis frameworks.

Fracture load of colored and non-colored high translucent zirconia three-unit fixed dental prosthesis frameworks.

Aim: The use of colored translucent zirconia may enable restorations of a more natural tooth-like appearance than previous opaque white zirconia. The shift from non-colored to colored zirconia may however entail a risk of reduced strength. The aim of the present study was to compare fracture load and fracture mode of fixed dental prostheses frameworks made of colored translucent zirconia to that of non-colored controls. Methods: A total of forty three-unit FDP frameworks were manufactured from two different high translucent zirconia materials (Zenostar, Wieland Dental, and DD cubeX2, Dental Direkt). Each group contained two subgroups, one colored and one non-colored. Coloring was performed before final sintering using two different infiltration techniques. All FDPs underwent an artificial aging process in the form of heat treatment, thermocycling and preloading whereafter the specimens were subjected to load until fracture. Fracture load and mode was registered. Results: For one of the zirconia materials, Zenostar, the non-colored frameworks showed significantly higher fracture loads (p < .0001) compared to its colored counterpart. No significant difference (p > .05) was found between colored and non-colored frameworks in the other zirconia material, DD cubeX2. All FDPs fractured through the connector. Some fractures ran through the mesial and some through the distal side of the connector but there were no significant differences in fracture mode between groups. Conclusion: Coloring before sintering of high-translucent zirconia may decrease the fracture load of FDP frameworks for certain materials and techniques. Fracture mode however, does not appear to be affected.

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