MSciD and PhD Post-Graduate Program in Oral Science, Ontological Clinic, Faculty of Dentistry, Federal University of Santa Catarina (UFSC), Florianópolis, Santa Catarina State, Brazil.
MSciD and PhD Post-Graduate Program in Oral Science, Prosthetic Dentistry Unit, Faculty of Dentistry, Federal University of Santa Maria (UFSM), Santa Maria, Rio Grande do Sul State, Brazil.
Dent Mater. 2023 Apr;39(4):372-382. doi: 10.1016/j.dental.2023.03.003. Epub 2023 Mar 13.
The objective of this study was to assess the influence of immediate dentin sealing (IDS) on the fatigue behavior of laminate occlusal veneers fabricated with CAD/CAM lithium disilicate ceramic and resin composite.
Forty sound human molars were prepared and randomly divided into 4 groups (n = 10): RC-IDS+ (IDS and resin composite occlusal laminate veneer); RC-IDS- (resin composite occlusal laminate veneer without IDS); LD-IDS+ (IDS and lithium disilicate laminate veneer); LD-IDS- (lithium disilicate occlusal laminate veneer without IDS). The restorations were obtained using a digital workflow. After surface conditioning and bonding, thermocycling and accelerated fatigue tests (20 Hz, 5000 cycles with an initial load of 300 N, step-size of 100 N for 10,000 cycles, up to 1000 N, and then a step-size of 50 N until failure) were conducted. Fatigue data were recorded for both outcomes (crack or fracture) and statistically analyzed. Fractographic and adhesive interface analysis were conducted.
The indirect resin composite groups showed better fatigue behavior compared to lithium disilicate. IDS only had a positive effect for the survival of resin composite restorations for the 'fracture' outcome. Evident presence of micro-gaps at the adhesive interface in the LD-IDS- group could be noted.
Immediate dentin sealing improved fatigue resistance behavior of resin composite occlusal veneers. However, this effect was not observed in lithium disilicate veneers.
本研究旨在评估即刻牙本质封闭(IDS)对 CAD/CAM 二硅酸锂陶瓷和树脂复合材料制作的层压咬合贴面的疲劳行为的影响。
将 40 颗健康的人磨牙制备并随机分为 4 组(n=10):RC-IDS+(IDS 和树脂复合材料咬合层压贴面);RC-IDS-(无 IDS 的树脂复合材料咬合层压贴面);LD-IDS+(IDS 和二硅酸锂层压贴面);LD-IDS-(无 IDS 的二硅酸锂咬合层压贴面)。使用数字工作流程获得修复体。表面处理和粘结后,进行热循环和加速疲劳试验(20Hz,初始载荷 300N,10000 次循环时步长 100N,增加至 1000N,然后步长 50N 直至失效)。记录两种结果(裂纹或断裂)的疲劳数据,并进行统计学分析。进行断口和粘结界面分析。
间接树脂复合材料组的疲劳行为优于二硅酸锂组。仅 IDS 对树脂复合材料修复体的“断裂”结果的存活率有积极影响。在 LD-IDS-组中,可以明显注意到粘结界面存在微间隙。
即刻牙本质封闭提高了树脂复合材料咬合贴面的抗疲劳性能。然而,这种效果在二硅酸锂贴面中并未观察到。