CAD/CAM陶瓷嵌体修复ⅱ类MOD牙洞磨牙的抗断裂性:深度边缘抬高的影响

Ali I Alqurshi, A. Elkaffas, S. Mahmoud
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引用次数: 1

摘要

目的:研究离子释放材料、树脂改性玻璃离子聚体和纳米复合可流动复合材料对CAD/CAM陶瓷嵌体修复ⅱ类MOD牙体磨牙抗折性能的影响。材料与方法:将50颗磨牙随机分为5组(n=10/组):搪瓷组(EN)、牙骨质组(CE)、固心组(CF)、tetrici - n flow组(TF)和树脂改性玻璃离子组(RM)。CF、RM、TF和CE组的标准MOD空腔边缘位于CEJ下方2 mm,而EN组的边缘位于CEJ上方1 mm。使用二甲醚将边缘升高至CEJ上方1mm。CE组不放置二甲醚。采用CAD/CAM制作标准化IPS e.max ZirCAD陶瓷衬垫,并用G-cem胶囊粘接在所有样品上。所有牙齿都进行了10,000次热循环(5°C/55°C)。采用万能试验机测量各组的抗断裂能力。数据采用单因素方差分析进行统计学分析。结果:断裂强度值经单因素方差分析,各组间差异无统计学意义(p=0.08)。结论:在本研究的参数范围内,材料的抗断裂性无显著差异。因此,综合研究结果表明,这些材料适用于二甲醚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fracture Resistance of Molars with Class II MOD Cavities Restored with CAD/CAM Ceramic Onlays: Impact of Deep Marginal Elevation
: Objective : This study evaluated the effect of deep marginal elevation (DME) using an ion-releasing material, resin-modified glass ionomer, and nano-hybrid flowable composite on the fracture resistance of molars with Class II MOD cavities restored with CAD/CAM ceramic onlays. Materials and Methods: Fifty molar teeth were randomly assigned to one of five groups (n=10/group): Enamel (EN), Cementum (CE), Cention forte (CF), Tetric-N flow (TF), and Resin modified glass ionomer (RM) groups. Specimens were prepared for a standard MOD cavity with margins located 2 mm below the CEJ for CF, RM, TF, and CE groups, while the EN group had margins located 1 mm above the CEJ. DME was used to elevate the margins to 1 mm above the CEJ. For the CE group, the ceramic onlay was placed without DME. Standardized IPS e.max ZirCAD ceramic onlays were fabricated with CAD/CAM and bonded on all specimens with G-cem Capsule. All teeth were subjected to 10,000 cycles of thermocycling (5°C/55°C). The fracture resistance of each group was measured using a universal testing machine. Data was statistically analyzed using a one-way ANOVA test. Results: Fracture strength values were subjected to one-way ANOVA revealed statistically non-significant differences among experimental groups (p=0.08). Conclusions: Within the parameters of this study, the materials had a non-significant difference in fracture resistance. Therefore, collective findings suggest that these materials were suitable for DME.
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