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Fatigue resistance of monolithic lithium disilicate occlusal veneers: a pilot study

机译:单片锂静态嵌入式胶合贴抗疲劳性:试验研究

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The use of thin lithium disilicate (LD) occlusal veneers is an effective method to increase the vertical dimension of occlusion in cases of tooth wear. However, doubt remains regarding the threshold thickness to be used in this restoration class. This study aims to evaluate the effect of ceramic thickness on the survival rate and failure pattern of LD molar veneer restorations using a simplified fatigue testing machine. Sixty sound, freshly extracted human molars were used. Three groups (n = 20) were randomly created with different ceramic thicknesses (0.5, 0.8, and 1.2 mm), and 60 LD IPS e.max Press LT occlusal veneers were fabricated. The ceramic restorations were luted with a resin cement. The stainless-steel rotating drum of the ball mill contained 10 zirconia (Y-TZP) and 10 stainless steel spheres, in 500 mL of distilled water at 37 +/- 1 degrees C. Crack growth in the LD restorations was evaluated under a stereomicroscope following each fatigue testing run (12 60-min runs). Progressive damage was observed as a function of cycling time. Survival was significantly influenced by the restoration thickness (p = 0.002, log-rank test), with thicker restorations exhibiting a higher survival rate. Thinner restorations (0.5 mm) showed significantly lower survival rate than 0.8- and 1.2-mm restorations (p < 0.016); no significant difference was observed between the 0.8- and 1.2-mm restorations. A threshold value of 0.8 mm may represent an acceptable compromise between fatigue resistance and tooth reduction.
机译:薄锂末端(LD)嵌入式胶合剂是一种有效的方法,可以增加牙齿磨损情况下闭塞的垂直尺寸。然而,怀疑仍然是在该恢复等级中使用的阈值厚度。本研究旨在使用简化的疲劳试验机评估陶瓷厚度对LD摩尔贴面修复件的存活率和故障模式的影响。使用六十次声音,新鲜提取的人臼齿。用不同陶瓷厚度(0.5,0.8和1.2mm)随机产生三组(n = 20),60 LD IPS E.max按下LT LT嵌入胶合剂。陶瓷修复物用树脂水泥螯合。球磨机的不锈钢旋转鼓含有10个氧化锆(Y-TZP)和10个不锈钢球体,在37 +/- 1摄氏度下,在37 +/- 1℃下。在立体显微镜下评估LD修复体中的裂纹生长遵循每个疲劳测试运行(12 60分钟)。观察到循环时间的常用损伤。存活率受到恢复厚度的显着影响(p = 0.002,对数级试验),修复较厚的存活率较高。更薄的修复物(0.5 mm)显示出比0.8-和1.2-mm的修复率显着降低(P <0.016); 0.8-和1.2mm修复后没有观察到显着差异。阈值为0.8mm可以表示抗疲劳性和齿减小之间的可接受的折衷。

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