两种无金属CAD/ CAM修复体氧化锆种植基台的边缘贴合及抗断裂性评价

Ayat Montaser
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引用次数: 1

摘要

目的:评价氧化锆种植基台支持两种无金属CAD/CAM修复体的边缘配合和抗骨折性。材料和方法:将20个现成的ZrO2基牙植入环氧树脂块中,类似于下第一前磨牙挤压稳定的钛假体种植体。样品被分为两组有关的材料用于制作覆盖;组(I) (n=10):氧化锆覆层,组(II) (n=10): breCAM。BioHPP应对。所有工件均采用CAD/CAM系统加工。样品经受了2万次的疲劳处理。采用数字立体显微镜确定边际拟合。断裂抗力采用万能试验机进行登记。试样被超载直到最后一次断裂发生,并记录了断裂时的载荷。数据分析采用可访问的软件程序(SPSS 18)。结果:BreCAM。BioHPP涂层(II)组的平均垂直边缘间隙值(122.08±25.05μm)和平均失效载荷值(2828.47±735.4N)均高于氧化锆涂层(I)组(27.06±3.2μm)(416.06±22.16N),具有统计学意义。结论:所使用的材料类型会影响边缘配合和抗断裂能力。与breCAM相比,氧化锆顶部样品具有更高的边缘配合度和更低的抗断裂能力。BioHPP复制样本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Marginal Fit and Fracture Resistance of Zirconia Implant Abutment Supporting Two Types of Metal Free CAD/ CAM Restorations
Purpose: To evaluate marginal fit as well as fracture resistance of zirconia implant abutment supporting two types of metal free CAD/CAM restorations. Materials and methods: Twenty ready-made ZrO2 abutments resembling lower first premolar squeezed and stabled to its conforming titanium dummy implants were implanted in epoxy resin blocks. Samples were divided into two groups in relation to the material utilized for the fabrication of the copings; group (I) (n=10): zirconia copings, group (II) (n=10): breCAM.BioHPP copings. All copings were machined using CAD/CAM system. Samples were exposed to a fatigue procedure for 20,000 cycles. Marginal fit was determined using digital stereomicroscope. Fracture resistance was registered using universal testing machine. The samples were overloaded till last fracture occurred and load at fracture was documented. Analysis of data was examined using accessible software programme (SPSS 18). Results: BreCAM.BioHPP copings, group (II), registered a statistically significant higher mean vertical marginal gap value (122.08±25.05μm) in addition to higher mean failure load value (2828.47±735.4N) compared to zirconia copings, group (I) (27.06±3.2μm) (416.06±22.16N) respectively. Conclusions: Material type used for the fabrication of the copings influences marginal fit and fracture resistance. Zirconia coping samples showed higher marginal fit and lower fracture resistance than breCAM.BioHPP coping samples.
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