Department of Prosthodontics, 9th People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai Key Laboratory of Stomatology, Shanghai, PR China.
Department of Endodontics, School and Hospital of Stomatology, Tongji University, Shanghai Engineering Research Center of Tooth Restoration and Regeneration, Shanghai, PR China.
Sci Rep. 2018 Jan 11;8(1):529. doi: 10.1038/s41598-017-17839-4.
The objective was to compare the adaptation between the major connectors of removable partial dentures derived from intraoral digital impressions and extraoral digital impressions. Twenty-four volunteers were enrolled. Each volunteer received an intraoral digital impression and one extraoral digital impression digitized from conventional gypsum impression. A software was used to create the major connectors on digital impression datasets. After all the virtual major connectors designed from Group intraoral digital impressions (Group I) and Group extraoral digital impressions (Group E) were directly fabricated by 3D printing technique, the adaptation of the final major connectors in volunteers' mouths were measured. The adaptation ranged from 159.87 to 577.99 μm in Group I while from 120.83 to 536.17 μm in Group E. The adaptation of major connectors in Group I were found better at the midline palatine suture while the adaptation of major connectors in Group E were found better at the two sides of the palatal vault. In both groups, the highest accuracy in adaptation was revealed at the anterior margin of the major connectors. It is feasible to manufacture the major connectors by digital impression and 3D printing technique. Both the adaptation of the two kinds of digital impressions were clinical acceptable.
目的是比较从口内数字印模和口外数字印模得出的可摘局部义齿主要连接体的适应性。招募了 24 名志愿者。每位志愿者均接受口内数字印模和从常规石膏印模数字化的口外数字印模。使用软件在数字印模数据集上创建主要连接体。将来自口内数字印模组(组 I)和口外数字印模组(组 E)的所有虚拟主要连接体直接通过 3D 打印技术制造后,测量志愿者口中最终主要连接体的适应性。组 I 的适应范围为 159.87 至 577.99μm,而组 E 的适应范围为 120.83 至 536.17μm。组 I 中的主要连接体在腭中缝处的适应性较好,而组 E 中的主要连接体在腭穹窿两侧的适应性较好。在两组中,主要连接体的适应性在其前缘处最高。通过数字印模和 3D 打印技术制造主要连接体是可行的。两种数字印模的适应性均在临床可接受范围内。