Ling Long, Lai Theresa, Chung Pei-Ting, Sabet Sara, Tran Victoria, Malyala Raj
Glidewell Dental, Irvine, CA 92612, USA.
Polymers (Basel). 2025 Feb 25;17(5):610. doi: 10.3390/polym17050610.
This study aims to assess and compare the shrinkage, accuracy, and accuracy stability of a novel 3D-printing model resin and eight commercially available 3D-printing model resin materials. The experimental model resin was developed by our 3D-printing proprietary resin technology. Eight commercially available 3D-printing model resins were included for comparison. The AcuVol video imaging technique was used to test volumetric shrinkage. Full-arch tooth models were printed for each model resin via digital light processing (DLP) technology. The 3D average distance between the scanned model and the designed CAD digital file was applied to determine the dimensional accuracy of the 3D-printed full-arch tooth models. One-way ANOVA and Tukey's post hoc test ( < 0.05) were utilized to analyze the average values of volumetric shrinkage and 3D average distance (dimensional accuracy). The experimental model resin showed significantly lower volumetric shrinkage (7.28%) and significantly higher or higher accuracy and accuracy stability (11.66-13.77 µm from the initial day to four weeks) than the other commercially available model resins (7.66-11.2%, 14.03-41.14 µm from the initial day to four weeks). A strong correlation was observed between volumetric shrinkage and dimensional accuracy (Pearson correlation coefficient R = 0.7485). For clinically successful modelling applications in restorations, orthodontics, implants, and so on, the new 3D-printing model resin is a promising option.
本研究旨在评估和比较一种新型3D打印模型树脂与八种市售3D打印模型树脂材料的收缩率、精度及精度稳定性。实验模型树脂由我们的3D打印专有树脂技术研发而成。纳入八种市售3D打印模型树脂进行比较。采用AcuVol视频成像技术测试体积收缩率。通过数字光处理(DLP)技术为每种模型树脂打印全牙弓牙齿模型。应用扫描模型与设计的CAD数字文件之间的3D平均距离来确定3D打印全牙弓牙齿模型的尺寸精度。采用单因素方差分析和Tukey事后检验(<0.05)分析体积收缩率和3D平均距离(尺寸精度)的平均值。与其他市售模型树脂(从初始日到四周的体积收缩率为7.66 - 11.2%,3D平均距离为14.03 - 41.14 µm)相比,实验模型树脂的体积收缩率显著更低(7.28%),精度及精度稳定性显著更高或更高(从初始日到四周为11.66 - 13.77 µm)。体积收缩率与尺寸精度之间存在强相关性(Pearson相关系数R = 0.7485)。对于修复、正畸、种植等临床成功的建模应用而言,新型3D打印模型树脂是一个有前景的选择。