Bae Eun-Bin, Cho Won-Tak, Park Do-Hyun, Hwang Su-Hyun, Lee So-Hyoun, Yun Mi-Jung, Jeong Chang-Mo, Huh Jung-Bo
Department of Prosthodontics, Dental Research Institute, Dental and Life Sciences Institute, Education and Research Team for Life Science on Dentistry, School of Dentistry, Pusan National University, Yangsan, Republic of Korea.
The Shapiro Family Laboratory of Viral Oncology and Aging Research & Section of Restorative Dentistry, UCLA School of Dentistry, Los Angeles, CA, USA.
J Adv Prosthodont. 2023 Jun;15(3):155-170. doi: 10.4047/jap.2023.15.3.155. Epub 2023 Jun 28.
This study aims to clinically compare the fitness and trueness of zirconia crowns fabricated by different combinations of open CAD-CAM systems.
Total of 40 patients were enrolled in this study, and 9 different zirconia crowns were prepared per patient. Each crown was made through the cross-application of 3 different design software (EZIS VR, 3Shape Dental System, Exocad) with 3 different processing devices (Aegis HM, Trione Z, Motion 2). The marginal gap, absolute marginal discrepancy, internal gap(axial, line angle, occlusal) by a silicone replica technique were measured to compare the fit of the crown. The scanned inner and outer surfaces of the crowns were compared to CAD data using 3D metrology software to evaluate trueness.
There were significant differences in the marginal gap, absolute marginal discrepancy, axial and line angle internal gap among the groups ( < .05) in the comparison of fit. There was no statistically significant difference among the groups in terms of occlusal internal gap. The trueness ranged from 36.19 to 43.78 µm but there was no statistically significant difference within the groups ( > .05).
All 9 groups showed clinically acceptable level of marginal gaps ranging from 74.26 to 112.20 µm in terms of fit comparison. In the comparison of trueness, no significant difference within each group was spotted. Within the limitation of this study, open CAD-CAM systems used in this study can be assembled properly to fabricate zirconia crown.
本研究旨在临床上比较不同开放式计算机辅助设计与制造(CAD-CAM)系统组合制作的氧化锆全冠的适合性与精确性。
本研究共纳入40例患者,每位患者制备9个不同的氧化锆全冠。每个全冠通过3种不同设计软件(EZIS VR、3Shape Dental System、Exocad)与3种不同加工设备(Aegis HM、Trione Z、Motion 2)的交叉应用制作而成。采用硅橡胶复制技术测量边缘间隙、绝对边缘差异、内部间隙(轴向、线角、咬合面)以比较全冠的适合性。使用三维测量软件将全冠扫描的内表面和外表面与CAD数据进行比较,以评估精确性。
在适合性比较中,各组之间的边缘间隙、绝对边缘差异、轴向和线角内部间隙存在显著差异(P<0.05)。各组之间在咬合面内部间隙方面无统计学显著差异。精确性范围为36.19至43.78 µm,但组内无统计学显著差异(P>0.05)。
在适合性比较方面,所有9组的边缘间隙在74.26至112.20 µm之间,均处于临床可接受水平。在精确性比较中,每组内均未发现显著差异。在本研究的局限性内,本研究中使用的开放式CAD-CAM系统可正确组装以制作氧化锆全冠。