Târtea Daniel Adrian, Manolea Horia Octavian, Ionescu Mihaela, Gîngu Oana, Amărăscu Marina Olimpia, Popescu Adrian Marcel, Mercuţ Veronica, Popescu Sanda Mihaela
Department of Oral Rehabilitation, University of Medicine and Pharmacy of Craiova, 200349 Craiova, Romania.
Department of Dental Materials, University of Medicine and Pharmacy of Craiova, 200349 Craiova, Romania.
J Pers Med. 2024 Jun 28;14(7):699. doi: 10.3390/jpm14070699.
Recently, due to the high demand for dental implants, the use of dental implant stock abutments has increased significantly, especially dental custom CAD/CAM implant abutments milled by dental technicians in their laboratories. The purpose of this study is to analyze the surface quality of the emergence profile of dental custom CAD/CAM implant abutments made by a non-industrial milling machine, compared to original and compatible dental implant stock abutments made by industrial machines. Thirty dental implant abutments were divided into six study lots. Lot 1 (control group): original dental implant stock abutments-industrial machined; lot 2 (study group): compatible dental implant stock abutments-industrial machined; lots 3, 4, 5, and 6 (study groups): compatible custom CAD/CAM dental implant abutments-non-industrial milled with hyperDENT CAM software and Paragon Tools. The Nikon SMZ745T stereomicroscope was used to analyze the emergence profile surface of each dental implant abutment. The structure of the analyzed surfaces did not show significant differences between original and compatible abutments that were industrially machined. As for the customized dental implant abutments, the greatest similarity with the original was obtained for lot 6, and a significant statistical difference was obtained for lot 4. Stepover and Feed Rate parameters of the milling process influenced the surface roughness of the emergence profile for the customized dental implant abutments. The digital technology of non-industrial milling compatible custom CAD/CAM dental implant abutments is reliable and within the correct milling parameters.
最近,由于对牙种植体的需求很高,牙种植体库存基台的使用显著增加,尤其是牙科技术人员在其实验室中用计算机辅助设计/计算机辅助制造(CAD/CAM)铣削的定制牙种植体基台。本研究的目的是分析由非工业铣床制造的定制CAD/CAM牙种植体基台的龈缘轮廓表面质量,并与由工业机器制造的原装和兼容牙种植体库存基台进行比较。30个牙种植体基台被分为6个研究组。第1组(对照组):原装牙种植体库存基台——工业加工;第2组(研究组):兼容牙种植体库存基台——工业加工;第3、4、5和6组(研究组):兼容定制CAD/CAM牙种植体基台——使用hyperDENT CAM软件和Paragon工具进行非工业铣削。使用尼康SMZ745T体视显微镜分析每个牙种植体基台的龈缘轮廓表面。分析表面的结构在工业加工的原装和兼容基台之间没有显示出显著差异。至于定制牙种植体基台,第6组与原装基台的相似度最高,而第4组则有显著的统计学差异。铣削过程的步距和进给速度参数影响了定制牙种植体基台龈缘轮廓的表面粗糙度。非工业铣削兼容定制CAD/CAM牙种植体基台的数字技术是可靠的,并且在正确的铣削参数范围内。