Kakinuma Hiroaki, Izumita Kuniyuki, Yoda Nobuhiro, Egusa Hiroshi, Sasaki Keiichi
Department of Next-generation Dental Material Engineering, Tohoku University Graduate School of Dentistry.
Division of Advanced Prosthetic Dentistry, Tohoku University Graduate School of Dentistry.
Dent Mater J. 2022 Nov 30;41(6):808-815. doi: 10.4012/dmj.2022-074. Epub 2022 Jul 6.
This study aimed to compare the dimensional accuracies of three-dimensional (3D)-printed and milled resin-composite crowns, and to determine acceptable abutment-tooth shapes for printing. Four first-molar abutment models were prepared: the master model form and three models with sharp occluso-axial line angles. Crowns were designed on each abutment using computer-aided design software. The drill-offset value was set at 0.0 or 0.5 mm to evaluate the effect on the dimensional accuracy of milling. A digital light processing-based 3D printer was used to fabricate 3D-printed crowns. Milled crowns were fabricated by wet-milling. The trueness was evaluated by superimposing the design data. Regardless of the abutment form, 3D-printed crowns showed higher accuracy with fewer marginal discrepancies than milled crowns. Milled crowns showed significant dimensional deviations, especially at cusps. Moreover, offset correction resulted in grooves on the internal surface of milled crowns with negative deviations, which were especially evident in crowns for the sharp models.
本研究旨在比较三维(3D)打印树脂复合冠和铣削树脂复合冠的尺寸精度,并确定适合打印的基牙形状。制备了四个第一磨牙基牙模型:主模型形态和三个具有尖锐牙合轴角的模型。使用计算机辅助设计软件在每个基牙上设计牙冠。将钻偏置值设置为0.0或0.5毫米,以评估其对铣削尺寸精度的影响。使用基于数字光处理的3D打印机制作3D打印牙冠。通过湿铣削制作铣削牙冠。通过叠加设计数据来评估准确性。无论基牙形态如何,3D打印牙冠均显示出比铣削牙冠更高的精度,边缘差异更少。铣削牙冠显示出明显的尺寸偏差,尤其是在牙尖处。此外,偏置校正导致铣削牙冠内表面出现负偏差的凹槽,这在尖锐模型的牙冠中尤为明显。