STRESS DISTRIBUTION OF MONOLITHIC AND VENEERED THREE-UNIT ZIRCONIA FDPS: A FINITE ELEMENT ANALYSIS.

IF 2.1 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Majed M Alsarani, Omar Y El-Mowaf, Thomas W Coyle, Amin Rizkalla, Joseph Fava
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引用次数: 0

Abstract

Purpose: To evaluate the effect of restoration design on fracture resistance and stress distribu0on of veneered and monolithic three-unit zirconia fixed partial dentures (FDPs) using finite element analysis (FEA).

Materials and methods: Identical epoxy resin replicas of mandibular second premolars and second molars (to serve as abutments for the three-unit bridges) were divided into four groups (n = 10): monolithic zirconia (MZ) restorations; conventional layering veneering technique (ZL); heat pressed-on technique (ZP); or CAD/CAM lithium-disilicate glass-ceramics (CAD-on). Specimens were subjected to compressive cyclic loading on the mesio-buccal cusp of the pontic (load range 50 to 600 N; aqueous environment; 500,000 cycles) in a universal testing machine. Data were statistically analyzed at 5% significance level with Fisher exact test and Kaplan-Meier survival analysis. 3D models were constructed in accordance with experimental groups. The stress distribution in each model was analyzed and evaluated according to the location and magnitude of the maximum principal stresses (MPSs) using ANSYS so\ware.

Results: Specimens from ZL and ZP groups failed at different stages of the 500,000 cycles fatigue, while CAD-on and MZ restorations survived the fatigue test. Statistically, there was a significant difference between the groups (P < .001). The MPS were located under the mesial connector in both monolithic and bilayered three-unit zirconia FDPs. These stresses were found to be higher in monolithic geometries compared to bilayered zirconia FDPs.

Conclusions: Monolithic threeunit zirconia and CAD-on zirconia frameworks resulted in superior fracture resistance. Restora0on design significantly affected the stress distribu0on of three-unit zirconia FDPs.

单片和贴面三元氧化锆FDPs的应力分布有限元分析。
目的:利用有限元分析(FEA)评估修复体设计对单板和单片氧化锆固定局部义齿(FDPs)抗折性和应力分布的影响。材料和方法:将下颌第二前磨牙和第二磨牙(用作三单元桥的基牙)的相同环氧树脂复制品分为四组(n=10):单片氧化锆(MZ)修复体;传统的分层贴面技术(ZL)、热压技术(ZP)或CAD/CAM二硅酸锂玻璃陶瓷(CAD on)。在通用试验机中,对样本在桥的近中颊侧牙尖顶上进行压缩循环载荷(载荷范围为50至600N;水性环境;500000次循环)。采用Fisher精确检验和Kaplan-Meier生存率分析,以5%的显著性水平对数据进行统计学分析。根据实验组构建3D模型。根据最大主应力(MPS)的位置和大小,使用ANSYS软件对每个模型中的应力分布进行分析和评估。结果:ZL组和ZP组的标本在50万周疲劳的不同阶段均失效,而CAD on和MZ修复体在疲劳试验中幸存。统计学上,两组之间存在显著差异(P<.001)。在单片和双层3单元氧化锆FDP中,MPS均位于内侧连接器下方。与双层氧化锆FDP相比,单片几何形状中的这些应力更高。结论:单片3单元氧化锆和基于氧化锆的CAD框架具有优异的抗断裂性能。修复设计显著影响了3单元氧化锆FDP的应力分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Prosthodontics
International Journal of Prosthodontics 医学-牙科与口腔外科
CiteScore
3.20
自引率
4.30%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Official Journal of the European Association for Osseointegration (EAO), the International College of Prosthodontists (ICP), the German Society of Prosthodontics and Dental Materials Science (DGPro), and the Italian Academy of Prosthetic Dentistry (AIOP) Prosthodontics demands a clinical research emphasis on patient- and dentist-mediated concerns in the management of oral rehabilitation needs. It is about making and implementing the best clinical decisions to enhance patients'' quality of life via applied biologic architecture - a role that far exceeds that of traditional prosthetic dentistry, with its emphasis on materials and techniques. The International Journal of Prosthodontics is dedicated to exploring and developing this conceptual shift in the role of today''s prosthodontist, clinician, and educator alike. The editorial board is composed of a distinguished team of leading international scholars.
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