Department of Prosthodontics, Center for Dentistry and Oral Medicine (Carolinum), Goethe University Frankfurt am Main.
Department of Prosthetic Dentistry, University Hospital, LMU Munich.
Dent Mater J. 2024 Sep 28;43(5):629-636. doi: 10.4012/dmj.2023-215. Epub 2024 Aug 10.
This study aims to assess the dimensional accuracy of complete denture bases fabricated from different CAD/CAM technologies and a conventional method, including milling (CNC), PolyJet (PJ), laser sintering (SLS), digital light processing (DLP), and injection molding (IM). It also examines the influence of the removal of technology-specific connectors or support structures when present. Denture base surfaces were digitized using a laboratory scanner, and virtual measurement points were calculated with tetrahedral reference geometries. Defined distances were measured in all spatial directions and compared to design data (p<0.05), revealing significant differences in sagittal (p=0.004), transversal (p<0.001), and vertical (p<0.001) dimensions. Connector removal had no significant impact for CNC but significantly affected DLP. All technologies yielded clinically acceptable results, with CNC milling demonstrating the best overall outcome.
本研究旨在评估不同 CAD/CAM 技术和传统方法(包括铣削(CNC)、PolyJet(PJ)、激光烧结(SLS)、数字光处理(DLP)和注塑成型(IM))制造的全口义齿基托的尺寸精度,并研究在存在特定技术连接器或支撑结构去除时的影响。使用实验室扫描仪对义齿基托表面进行数字化,并用四面体参考几何形状计算虚拟测量点。在所有空间方向上测量定义的距离,并与设计数据进行比较(p<0.05),结果显示矢状向(p=0.004)、横向(p<0.001)和垂直向(p<0.001)尺寸存在显著差异。连接器去除对 CNC 没有显著影响,但对 DLP 有显著影响。所有技术均产生了临床可接受的结果,其中 CNC 铣削的总体效果最佳。