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3D 凝胶沉积法制作的氧化锆固定义齿的断裂强度高于传统铣削制作的氧化锆固定义齿。

Zirconia fixed dental prostheses fabricated by 3D gel deposition show higher fracture strength than conventionally milled counterparts.

机构信息

Department of Prosthetic Dentistry, Center for Dental Medicine, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Hugstetterstr. 55, 79106, Freiburg, Germany.

Department of Prosthetic Dentistry, Center for Dental Medicine, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Hugstetterstr. 55, 79106, Freiburg, Germany.

出版信息

J Mech Behav Biomed Mater. 2022 Nov;135:105456. doi: 10.1016/j.jmbbm.2022.105456. Epub 2022 Sep 17.

Abstract

Zirconia restorations, which are fabricated by additive 3D gel deposition and do not require glazing like conventional restorations, were introduced as "self-glazed" zirconia restorations into dentistry. This in vitro investigation characterized the surface layer, microstructure and the fracture and aging behavior of "self-glazed" zirconia (Y-TZP) three-unit fixed dental prostheses (FDP) and compared them to conventionally CAD/CAM milled and glazed controls (Y-TZP-FDPs). For this purpose, the FDPs were analyzed by (focused ion beam) scanning electron microscopy, laserscanning microscopy, energy dispersive X-ray spectroscopy, X-ray diffraction and a dynamic and static loading test. For the latter, half of the samples of each material group (n = 16) was subjected to 5 million cycles of thermocyclic loading (98N) in an aqueous environment in a chewing simulator. Afterwards, all FDPs were loaded to fracture. Y-TZP-FDPs demonstrated a comparable elemental composition but higher surface microstructural homogeneity and fracture strength compared to Y-TZP-FDPs. Microstructural flaws within the FDPs' surfaces were identified as fracture origins. The high fracture strength of the Y-TZP-FDPs was attributed to a finer-grained microstructure with fewer surface flaws compared to the Y-TZP-FDPs which showed numerous flaws in the glaze overlayer. A decrease in fracture strength after dynamic loading from 5165N to 4507N was observed for the Y-TZP-FDPs, however, fracture strength remained statistically significantly above the one measured for Y-TZP-FDPs (before chewing simulation: 1923N; after: 2041N). Within the limits of this investigation, it can therefore be concluded that Y-TZP appears to be stable for clinical application suggesting further investigations to prove clinical applicability.

摘要

氧化锆修复体通过添加剂 3D 凝胶沉积制造,不需要像传统修复体那样上釉,因此被引入牙科领域作为“自上釉”氧化锆修复体。本体外研究对“自上釉”氧化锆(Y-TZP)三单位固定义齿修复体(FDP)的表面层、微观结构以及断裂和老化行为进行了表征,并与传统 CAD/CAM 铣削和上釉的对照物(Y-TZP-FDP)进行了比较。为此,使用(聚焦离子束)扫描电子显微镜、激光扫描显微镜、能谱 X 射线分析、X 射线衍射和动态和静态加载试验对 FDP 进行了分析。对于后者,每个材料组的一半样本(n=16)在咀嚼模拟器中的水环境中经受 500 万次热循环(98N)载荷。之后,所有 FDP 都被加载至断裂。与 Y-TZP-FDP 相比,Y-TZP-FDP 具有相似的元素组成,但表面微观结构均匀性更高,断裂强度更高。FDP 表面的微观结构缺陷被确定为断裂起源。与 Y-TZP-FDP 相比,Y-TZP-FDP 的晶粒更细,表面缺陷更少,因此具有更高的断裂强度,而 Y-TZP-FDP 的釉面层则存在大量缺陷。Y-TZP-FDP 的动态加载后断裂强度从 5165N 下降至 4507N,但仍明显高于咀嚼模拟前(1923N)和咀嚼模拟后(2041N)的 Y-TZP-FDP 的断裂强度。在本研究的限制范围内,可以得出结论,Y-TZP 似乎适用于临床应用,表明需要进一步的研究来证明其临床适用性。

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