Department of Prosthodontics, University of Medicine and Pharmacy "Victor Babes", B-dul Revolutiei 1989, No. 9, Timisoara, 300580, Romania.
TADERP Research Center, Department of Prosthodontics, University of Medicine and Pharmacy "Victor Babes", B-dul Revolutiei 1989, No. 9, Timisoara, 300580, Romania.
BMC Oral Health. 2024 Jun 8;24(1):671. doi: 10.1186/s12903-024-04439-8.
The latest generation of intraoral scanners can record the prosthetic field with relative ease, high accuracy and comfort for the patient, and have enabled fully digital protocols for designing and manufacturing complete dentures. The present study aims to examine the intaglio surface trueness of 3D printed maxillary dentures produced by fully digital workflow in comparison with dentures produced by analogue clinical and laboratory prosthetic workflow. The edentulous maxillary arch of 15 patients was scanned with an intraoral scanner as well as the intaglio of the delivered conventional denture. The scan of the edentulous arch was imported into a dental design software to produce the denture base which was then 3D printed. The intaglio surface of the finished 3D printed denture bases was digitized and used to assess the trueness of the printed denture bases compared to the intaglio surface of the conventional dentures as well as performing a trueness comparison in relation to the scanned edentulous arches. The dataset (n = 30) was subjected to Kruskal-Wallis test analysis, the significance level being established at α = 0.05. The results of the study showed that the printed group displayed better trueness values with a median of 176.9 μm while the analogue group showed a median of 342 μm. Employing a fully digital workflow to produce 3D-printed denture bases yields a consistent and precise manufacturing method when accounting for the intaglio surface of the denture.
最新一代的口内扫描仪可以相对轻松、高精度且舒适地记录修复体区域,并且已经实现了完整数字化的设计和制造全口义齿的方案。本研究旨在检查通过全数字化工作流程生产的 3D 打印上颌义齿的印模面精度,并将其与通过模拟临床和实验室修复工作流程生产的义齿进行比较。15 名无牙颌患者的上颌牙槽嵴分别用口内扫描仪和已交付的常规义齿的印模进行扫描。无牙颌牙槽嵴的扫描被导入牙科设计软件以生成义齿基托,然后对其进行 3D 打印。完成的 3D 打印义齿基托的印模面被数字化,并用于评估打印义齿基托相对于常规义齿的印模面的精度,以及相对于扫描的无牙颌牙槽嵴进行精度比较。数据集(n=30)接受 Kruskal-Wallis 检验分析,显著性水平设定为α=0.05。研究结果表明,打印组的精度值更好,中位数为 176.9μm,而模拟组的中位数为 342μm。采用全数字化工作流程生产 3D 打印义齿基托可以在考虑义齿印模面的情况下实现一致且精确的制造方法。