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首页> 外文期刊>The Angle orthodontist. >Accuracy of three-dimensional dental resin models created by fused deposition modeling, stereolithography, and Polyjet prototype technologies: A comparative study
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Accuracy of three-dimensional dental resin models created by fused deposition modeling, stereolithography, and Polyjet prototype technologies: A comparative study

机译:通过熔融沉积建模,立体光刻和Polyjet原型技术创建的三维牙科树脂模型的准确性:一项比较研究

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Objectives: The aim of this study was to assess the dimensional accuracy of fused deposition modeling (FDM)–, Polyjet-, and stereolithography (SLA)–produced models by comparing them to traditional plaster casts. Materials and Methods: A total of 12 maxillary and mandibular posttreatment orthodontic plaster casts were selected from the archives of the Orthodontic Department at the Indiana University School of Dentistry. Plaster models were scanned, saved as stereolithography files, and printed as physical models using three different three-dimensional (3D) printers: Makerbot Replicator (FDM), 3D Systems SLA 6000 (SLA), and Objet Eden500V (Polyjet). A digital caliper was used to obtain measurements on the original plaster models as well as on the printed resin models. Results: Comparison between the 3D printed models and the plaster casts showed no statistically significant differences in most of the parameters. However, FDM was significantly higher on average than were plaster casts in maxillary left mixed plane (MxL-MP) and mandibular intermolar width (Md-IMW). Polyjet was significantly higher on average than were plaster casts in maxillary intercanine width (Mx-ICW), mandibular intercanine width (Md-ICW), and mandibular left mixed plane (MdL-MP). Polyjet was significantly lower on average than were plaster casts in maxillary right vertical plane (MxR-vertical), maxillary left vertical plane (MxL-vertical), mandibular right anteroposterior plane (MdR-AP), mandibular right vertical plane (MdR-vertical), and mandibular left vertical plane (MdL-vertical). SLA was significantly higher on average than were plaster casts in MxL-MP, Md-ICW, and overbite. SLA was significantly lower on average than were plaster casts in MdR-vertical and MdL-vertical. Conclusions: Dental models reconstructed by FDM technology had the fewest dimensional measurement differences compared to plaster models.
机译:目的:本研究的目的是通过与传统石膏模型进行比较来评估熔融沉积模型(FDM),Polyjet和立体平版印刷(SLA)产生的模型的尺寸精度。材料和方法:从印第安纳大学牙科学院正畸科的档案中选择了总共12个上颌和下颌后处理正畸石膏模型。使用三种不同的三维(3D)打印机:Makerbot Replicator(FDM),3D Systems SLA 6000(SLA)和Objet Eden500V(Polyjet)将石膏模型扫描,保存为立体光刻文件,并作为物理模型打印。使用数字卡尺来获得原始石膏模型以及印刷树脂模型的测量值。结果:3D打印模型和石膏模型之间的比较显示,在大多数参数上没有统计学上的显着差异。然而,在上颌左混合平面(MxL-MP)和下颌磨牙间宽度(Md-IMW)中,FDM的平均水平明显高于石膏模型。 Polyjet在上颌犬齿间宽度(Mx-ICW),下颌犬齿间宽度(Md-ICW)和下颌左混合平面(MdL-MP)上的平均水平明显高于石膏模型。 Polyjet的平均水平明显低于上颌右垂直平面(MxR垂直),上颌左垂直平面(MxL垂直),下颌右前后平面(MdR-AP),下颌右垂直平面(MdR垂直)的石膏模型以及下颌左垂直平面(MdL垂直)。在MxL-MP,Md-ICW和咬合中,SLA的平均水平明显高于石膏模型。在MdR垂直和MdL垂直中,SLA的平均水平明显低于石膏模型。结论:与石膏模型相比,通过FDM技术重建的牙科模型的尺寸测量差异最小。

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