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具有异质基台支持的人工老化氧化锆固定义齿的承载能力。

Load-bearing capacity of artificially aged zirconia fixed dental prostheses with heterogeneous abutment supports.

机构信息

Department of Prosthetic Dentistry and Biomedical Materials Science, Hannover Medical School, Carl-Neuberg-Str. 1, 30625 Hannover, Germany.

出版信息

Clin Oral Investig. 2012 Jun;16(3):961-8. doi: 10.1007/s00784-011-0569-0. Epub 2011 May 24.

DOI:10.1007/s00784-011-0569-0
PMID:21607567
Abstract

Aim of this in vitro study was to investigate the effect of artificial ageing and differential abutment support on the load-bearing capacity of zirconia posterior four-unit fixed dental prostheses (FDPs). Thirty-six FDPs were fabricated using CAD/CAM technology and divided into three groups. Specimens in the first group were cemented onto tooth analogues with simulated periodontal resilience, in the second group onto a dental implant and a tooth analogue, but in the third group only onto implants. Half of the samples in each group underwent artificial ageing. Afterwards, all FDPs were loaded until bulk fracture in a universal testing machine. Load-displacement curves and forces at fracture were recorded and results were statistically analysed using ANOVA. Load-bearing capacities within the different test groups averaged as follows (control/artificially aged): tooth-tooth supported (2,009/1,751 N), tooth-implant supported (2,144/1,935 N) and implant-implant supported (2,689/2,484 N). Artificial ageing as well as differential abutment support did have a significant influence on the fracture strength of the zirconia FDPs. Implant-retained prostheses demonstrated the highest load-bearing capacity, while resilient support was demonstrated to be unfavourable. According to these in vitro results, zirconia four-unit prostheses may be promising for application in posterior areas with all three support scenarios (implant-assisted, tooth-retained, or implant-tooth-interconnected prostheses). However, the restorations' mechanical strength may expected to be significantly influenced in situ by ageing of the material on the long term.

摘要

本体外研究旨在探讨人工老化和不同基牙支持对氧化锆后四单位固定义齿(FDP)承载能力的影响。采用 CAD/CAM 技术制作 36 个 FDP,并分为三组。第一组试件模拟牙周弹性粘结于牙模拟体上,第二组粘结于牙种植体和牙模拟体上,第三组仅粘结于种植体上。每组的一半样本进行人工老化。然后,所有 FDP 在万能试验机上加载直至整体断裂。记录载荷-位移曲线和断裂力,并使用 ANOVA 进行统计学分析。不同测试组的承载能力平均值如下(对照/人工老化):牙对牙支持(2009/1751N)、牙-种植体支持(2144/1935N)和种植体-种植体支持(2689/2484N)。人工老化和不同基牙支持对氧化锆 FDP 的断裂强度有显著影响。种植体支持的修复体具有最高的承载能力,而弹性支持则不利。根据这些体外结果,氧化锆四单位修复体在后牙区的三种支持方案(种植体辅助、牙保留或种植体-牙互连修复体)中可能具有应用前景。然而,长期来看,材料的老化可能会显著影响修复体的机械强度。

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