应用CAD/CAM系统评价二硅酸锂与纳米陶瓷树脂冠的边际适应性

Vieira Lucas PL, Ávila Gisseli B, Franco Aline BG, Franco Amanda G, Carvalho Geraldo AP, D. Sérgio C, Ramos Elimário V
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摘要

本研究的目的是评估CEREC系统(德国Sirona)生产的不同陶瓷材料的边际适应性。采用模拟实体基台Straumann (Straumann, Basel, Switzerland),高5.5mm,平台4.8mm,与轴向壁倾斜6度,倒角终点线作为主模型,使用CEREC Omnicam口内扫描仪进行扫描。获得了20个机械冠- 10个由二硅酸锂块(IpsE)制成。maxCad, IvoclarVivadent,列支敦士登,德国),10由纳米陶瓷树脂块(3M ESPE Lava ultimate,美国)制成。采用复制技术(RT)进行评估,采用Mitutoyo光学显微镜(TM 500)测量胶结涂层。结果表明,二硅酸锂冠的平均边际失适应值为78.63µm,明显大于纳米陶瓷树脂冠的63.15µm。因此,纳米陶瓷树脂冠具有比二硅酸锂冠更好的边缘适应性。尽管如此,两组的结果均在间接修复的临床可接受值范围内。
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Assessment of marginal adaptation of lithium disilicate and nanoceramic resin crowns using CAD/CAM system
The aim of this study is to assess the marginal adaptation of different ceramic materials produced by the CEREC system (Sirona, Germany). An analog of the solid abutment Straumann (Straumann, Basel, Switzerland) measuring 5.5mm of height, with platform of 4.8mm, tilt from the axial wall of 6 degrees and chamfer finish line was used as a master model and scanned with an intraoral scanner (CEREC Omnicam). 20 machined crowns were obtained - 10 manufactured from lithium disilicate blocks (IpsE.maxCad, IvoclarVivadent, Liechtenstein, Germany), 10 manufactured from nanoceramic resin blocks (3M ESPE Lava Utimate, USA). The assessment was made using the Replica Technique (RT) and the cementation coating was measured using an optical microscope Mitutoyo (TM 500). Results show a mean marginal disadaptation of lithium disilicate crowns of 78.63µm, which is significantly larger than the one found for nanoceramic resin crowns - 63.15µm. It is possible to conclude that nanoceramic resin crowns have a better marginal adaptation than lithium disilicate ones. Notwithstanding, results found for both groups are within the clinically acceptable values for indirect restorations.
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