Noh Mijun, Lee Habin, Lee Wansun, Kim Jaehong, Kim Jihwan
Department of Healthcare Sciences, Faculty of Dental Laboratory Science and Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Republic of Korea.
Department of Dental Technology, Graduate School, Bucheon University, 25 56th Street, Bucheon 14632, Republic of Korea.
Biomimetics (Basel). 2025 Jan 20;10(1):67. doi: 10.3390/biomimetics10010067.
This study evaluated the internal and marginal accuracy (trueness and precision) of zirconia laminate veneers fabricated using the DLP printing and milling method, employing 3D analysis software program. The maxillary central incisor tooth of a typodont model was prepared by a dentist and scanned using a desktop scanner. An anatomical zirconia laminate was designed using computer-aided design (CAD) software and saved in a standard tessellation language (STL) format. Thirty zirconia laminates were manufactured using a milling machine (MLL group) and a DLP printer (PTL group). All the specimens were scanned, and their internal and marginal areas were edited accordingly. The root-mean-square value was used to assess the accuracy of the internal and marginal areas of the zirconia laminates. Statistical significance was evaluated using the Mann-Whitney U test. Statistically significant differences were found in RMS values for both groups in the internal and marginal areas ( < 0.001 and = 0.034, respectively). The MLL and PTL groups differed significantly in terms of precision ( = 0.017), but not at the margin ( = 0.361). DLP-printed zirconia laminates demonstrated stable and consistent performance, making the technique a reliable option for producing esthetic prostheses.
本研究使用3D分析软件程序,评估了采用数字光处理(DLP)打印和铣削方法制作的氧化锆贴面的内部和边缘精度(准确性和精密度)。由一名牙医对一个牙模模型的上颌中切牙进行预备,并使用台式扫描仪进行扫描。使用计算机辅助设计(CAD)软件设计一个解剖学氧化锆贴面,并保存为标准镶嵌语言(STL)格式。使用铣床制作30个氧化锆贴面(MLL组),并使用DLP打印机制作30个氧化锆贴面(PTL组)。对所有标本进行扫描,并相应地编辑其内部和边缘区域。均方根值用于评估氧化锆贴面内部和边缘区域的精度。使用曼-惠特尼U检验评估统计学显著性。在内部和边缘区域,两组的均方根值均存在统计学显著差异(分别为<0.001和=0.034)。MLL组和PTL组在精密度方面存在显著差异(=0.017),但在边缘处无显著差异(=0.361)。DLP打印的氧化锆贴面表现出稳定且一致的性能,使该技术成为制作美观修复体的可靠选择。