Eftekhar Ashtiani Reza, Nasiry Khanlar Leila, Ghoveizi Rahab, Beyabanaki Elaheh
Prosthodontics Department, School of Dentistry, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
A.T. Still University, Missouri School of Dentistry Oral Health, Kirksville, Mo, US.
J Dent Res Dent Clin Dent Prospects. 2024 Summer;18(3):219-224. doi: 10.34172/joddd.41070. Epub 2024 Sep 7.
This in vivo study assessed the accuracy of single-tooth monolithic zirconia crowns made using an intraoral scanner (IOS) and computer-aided design/computer-aided manufacturing (CAD/CAM) technology.
Thirty patients requiring single posterior crowns were selected. The teeth were prepared with a deep chamfer finish line with a 1-mm extension subgingivally and a 1-mm reduction in all surfaces by one prosthodontist. The gingival margins were retracted using a gingival retraction paste before making impressions using a Trios scanner. All the digital impression files were sent to one laboratory using the dental designer software (3Shape, Copenhagen, Denmark). After completing the milling and sintering processes, the crowns were dyed and glazed. After removing the temporary crown, the qualitative assessment of proximal contacts of definitive monolithic zirconia crowns was performed according to the CDA criteria. Data were analyzed with Friedman's two-way analysis and independent t-test at α=0.05.
The difference in axial and total gaps between premolar and molar teeth was not significant; however, the mean marginal gap of molars was higher than that of the premolars (=0.043). Furthermore, the comparison of the axial, total, and marginal gaps between the upper and lower jaws showed no significant difference (>0.05). The distribution of occlusal and proximal contacts indicated 60% and 66.7% proper contacts and no contacts in 6.7% and 10% of cases, respectively.
Using IOSs could result in accurate monolithic zirconia crowns in terms of adaptation. Also, most occlusal and proximal contacts did not need any adjustments.
本体内研究评估了使用口腔内扫描仪(IOS)和计算机辅助设计/计算机辅助制造(CAD/CAM)技术制作的单颗全瓷氧化锆冠的准确性。
选择30例需要单颗后牙冠的患者。由一名修复医生制备牙齿,制备出深凹槽边缘线,龈下延伸1mm,所有表面磨除1mm。在使用Trios扫描仪取印模之前,用牙龈收缩糊剂收缩牙龈边缘。所有数字印模文件使用牙科设计软件(3Shape,丹麦哥本哈根)发送到一个实验室。完成铣削和烧结过程后,对牙冠进行染色和上釉。去除临时冠后,根据CDA标准对最终的全瓷氧化锆冠的邻接接触进行定性评估。数据采用Friedman双向分析和α=0.05的独立t检验进行分析。
前磨牙和磨牙之间的轴向间隙和总间隙差异不显著;然而,磨牙的平均边缘间隙高于前磨牙(=0.043)。此外,上下颌之间的轴向、总间隙和边缘间隙比较无显著差异(>0.05)。咬合和邻接接触的分布显示,分别有60%和66.7%的接触正常,6.7%和10%的病例无接触。
就适配性而言,使用IOS可以制作出准确的全瓷氧化锆冠。此外,大多数咬合和邻接接触不需要任何调整。