Department of Prosthodontics, Dental Clinic, Justus Liebig University, Schlangenzahl 14, 35392, Giessen, Germany.
Int J Implant Dent. 2023 Dec 6;9(1):47. doi: 10.1186/s40729-023-00516-9.
A high transfer accuracy of the intraoral implant position to a model is required, to manufacture implant-supported restorations. However, clinically relevant deviations persist between the intraoral implant position and the model obtained, even for the benchmark conventional custom implant impressions with polyether. Thus, new approaches using 3-D printed impression trays may increase the transfer accuracy of implant impressions. The ability to adjust parameters such as the thickness of the layers and the influence of the openings in the impression tray could potentially affect accuracy.
Four different types of impression trays (n = 10 for each group) for the conventional impression technique were investigated: conventional custom impression tray, customized foil tray, chairside 3-D printed impression tray with the SHERA system, and the Primeprint system using an implant master model with four implants in the posterior region and a reference cube. After plaster model casting, all models were measured using a coordinate measuring machine, and the deviation from the reference dataset was determined. A statistical ANOVA analysis was performed (p < 0.05).
Chairside 3-D printed impression trays showed the best results, followed by conventional custom impression trays. Implant impressions obtained using a customized foil tray exhibited the lowest accuracy. Statistically significant differences were observed between 3-D printed impression trays and conventional custom impression and customized foil trays (p < 0.05). Whereas, the implant position did not have any significant influence on accuracy (p > 0.05).
Chairside 3-D printed impression trays significantly increase the transfer accuracy for implant impression taking.
为了制造种植体支持的修复体,需要将口腔内种植体的位置高精度地转移到模型上。然而,即使对于使用聚醚的基准常规定制种植体印模,口腔内种植体位置和获得的模型之间仍然存在临床相关的偏差。因此,使用 3D 打印印模托盘的新方法可能会提高种植体印模的转移精度。调整参数的能力,如层的厚度和印模托盘开口的影响,可能会影响准确性。
研究了四种不同类型的常规印模技术的印模托盘(每组 10 个):常规定制印模托盘、定制箔片托盘、SHERA 系统的椅旁 3D 打印印模托盘和使用四个种植体在后牙区域和参考立方体制备的种植体主模型的 Primeprint 系统。在石膏模型铸造后,使用坐标测量机对所有模型进行测量,并确定与参考数据集的偏差。进行了统计方差分析(p<0.05)。
椅旁 3D 打印印模托盘的结果最佳,其次是常规定制印模托盘。使用定制箔片托盘获得的种植体印模精度最低。3D 打印印模托盘与常规定制印模和定制箔片托盘之间存在统计学上显著差异(p<0.05)。然而,种植体位置对准确性没有任何显著影响(p>0.05)。
椅旁 3D 打印印模托盘可显著提高种植体印模制取的转移精度。