Int J Comput Dent. 2021 Feb 26;24(1):29-40.
The purpose of this study was to compare the accuracy of intraoral scanning on a tooth model according to four finish line conditions (supragingival, equigingival, subgingival, and subgingival with gingival cord).
To simulate the clinical situation, the abutment was fabricated using ceramic materials. A pigment was added to the transparent orthodontic silicone to create a translucent gingiva. A CAD reference model (CRM) was obtained using a contact scanner. Finish lines on the tooth preparation were placed at the subgingival (0.5 mm below the level of the gingiva), equigingival, and supragingival (0.5 mm above the level of the gingiva) locations. In addition, a gingival cord was packed into the gingival sulcus below the subgingival finish line. A CAD test model (CTM) was obtained using two types of intraoral scanners (IOSs), i500 (Medit) and EZIS PO (DDS; N = 20 per locations). CRM and CTM were superimposed and analyzed using 3D analysis software. In the statistical analysis, the comparison of accuracy according to the finish line locations was confirmed by one-way ANOVA (α = 0.05). The differences between the groups were analyzed using the Tukey HSD post-hoc test.
There was a significant difference in the accuracy of intraoral scanning according to the finish line locations of the tooth preparations (P < 0.001). The equigingival and subgingival finish lines showed poor accuracy. The use of gingival cords significantly improved the accuracy (P < 0.05). There were significant differences between the two types of IOSs, with the i500 showing better accuracy than the EZIS PO (P < 0.001).
Supragingival finish lines or the use of gingival displacement cords is recommended for clinically acceptable accuracy (< 100 µm) of the marginal region captured with an IOS.
本研究旨在比较四种边缘线位置(龈上、平齐龈、龈下和龈下加龈缘线)条件下牙模内扫描的准确性。
为模拟临床情况,采用陶瓷材料制作基台。在透明正畸硅橡胶中添加颜料,制作半透明的牙龈。使用接触式扫描仪获得 CAD 参考模型(CRM)。牙体预备的边缘线置于龈下(龈下 0.5mm)、平齐龈和龈上(龈上 0.5mm)位置。此外,在龈下边缘线下的龈沟中填充龈缘线。使用两种口内扫描仪(IOSs)(Medit i500 和 DDS EZIS PO)获得 CAD 测试模型(CTM)(N = 20/位置)。使用 3D 分析软件对 CRM 和 CTM 进行叠加和分析。在统计分析中,通过单向方差分析(α=0.05)确认根据边缘线位置的准确性比较。使用 Tukey HSD 事后检验分析组间差异。
牙体预备边缘线位置对 IOS 内扫描的准确性有显著影响(P < 0.001)。平齐龈和龈下边缘线的准确性较差。使用龈缘线可显著提高准确性(P < 0.05)。两种 IOS 之间存在显著差异,i500 的准确性优于 EZIS PO(P < 0.001)。
为获得 IOS 采集的边缘区域具有临床可接受的精度(<100μm),建议采用龈上边缘线或使用龈缘线移位。