Chaiamornsup Patcharanun, Katheng Awutsadaporn, Ha Roubing, Tsuchida Yumi, Kanazawa Manabu, Uo Motohiro, Minakuchi Shunsuke, Suzuki Tetsuya, Takahashi Hidekazu
Department of Restorative Dentistry, Faculty of Dentistry, Naresuan University, Phitsanulok, Thailand.
Department of Advanced Biomaterials, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, Tokyo, Japan.
J Prosthodont Res. 2023 Oct 13;67(4):641-646. doi: 10.2186/jpr.JPR_D_22_00245. Epub 2023 Apr 8.
We evaluated the effects of build orientation and bar addition between lingual flanges on the accuracy of mandibular denture bases fabricated using a digital light processing (DLP) device.
Mandibular denture bases with and without a bar at the lingual flanges were virtually designed and assigned to eight build orientations. Six dentures per condition were fabricated using a DLP device with a methacrylate-based photopolymerizable monomer (Dima Print denture base) (n=96). The fabricated denture surfaces were digitized, and intaglio surfaces were obtained. These digitized surfaces were compared via superimposition using graphical software (Artec studio12 profession) to their original designed files, and root mean square estimates were obtained. The trueness of the entire and intaglio data was statistically analyzed non-parametrically.
The range of trueness of the entire and intaglio denture bases was 0.15-0.31 mm and 0.11-0.38 mm, respectively. The trueness at 135° and 270° for the entire denture base and that at 270° for the intaglio data without the bar were significantly lower than those for the other build orientations. The trueness at 270° was <0.15 mm irrespective of the conditions. The trueness with the bar of all build orientations, except that of 0° for intaglio data, was significantly smaller than or equal to the trueness without the bar of the corresponding build orientations.
Build orientation and bar addition influenced the accuracy of the complete dentures fabricated using DLP. A build orientation of 270° is recommended for fabricating a mandibular complete denture, irrespective of the bar addition.
我们评估了构建方向以及舌侧翼缘之间添加杆对使用数字光处理(DLP)设备制作的下颌义齿基托精度的影响。
对舌侧翼缘有杆和无杆的下颌义齿基托进行虚拟设计,并分配到八个构建方向。每种情况制作六个义齿,使用基于甲基丙烯酸酯的可光聚合单体的DLP设备(迪玛打印义齿基托)(n = 96)。将制作的义齿表面数字化,获得内凹面。使用图形软件(Artec studio12专业版)通过叠加将这些数字化表面与其原始设计文件进行比较,并获得均方根估计值。对整个和内凹数据的准确性进行非参数统计分析。
整个义齿基托和内凹义齿基托的准确性范围分别为0.15 - 0.31毫米和0.11 - 0.38毫米。整个义齿基托在1