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首页> 外文期刊>BioMed research international >Comparison of Conventional Methods and Laser-Assisted Rapid Prototyping for Manufacturing Fixed Dental Prostheses: An In Vitro Study
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Comparison of Conventional Methods and Laser-Assisted Rapid Prototyping for Manufacturing Fixed Dental Prostheses: An In Vitro Study

机译:传统方法和激光辅助快速原型的比较制造固定牙科假体:体外研究

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摘要

This study assessed whether there are differences in marginal fit between laser-fusion and conventional techniques to produce fixed dental prostheses (FDPs). A master steel die with 2 abutments was produced to receive a posterior 4-unit FDPs and single copings. These experimental models were divided into three groups (n = 20/group) manufactured: group 1, Ni-Cr alloy, with a lost-wax casting technique; group 2, Co-Cr alloy, with selective laser melting (SLM); and group 3, yttria-tetragonal zirconia polycrystal (Y-TZP), with a milling system. All specimens were cut along the longitudinal axis and their adaptation was measured at the marginal and shoulder areas on the right and left sides of each abutment. Measurements were made using a stereomicroscope (x60 magnification) and a scanning electron microscope (x800 magnification). The data were analyzed using one-way analysis of variance and the Bonferroni post hoc test, with a significance cutoff of 5%. Significant differences (P < 0.05) were observed between group 3 and the other groups. The marginal opening was smallest with Co-Cr alloy substructures, while the shoulder opening was smallest with Ni-Cr alloy substructures. Within the limitations of this study, the marginal fit of an FDP is better with rapid prototyping (RP) via SLM than conventional manufacturing systems.
机译:本研究评估了激光融合与常规技术之间的边际适合是否存在差异,以产生固定的牙科假体(FDP)。制造具有2台基台的主钢模具以接收后部4单元FDP和单一的调封。这些实验模型分为三组(n = 20 /组)制造的:第1组,Ni-Cr合金,丢失蜡铸造技术;第2组CO-CR合金,具有选择性激光熔化(SLM);和第3组,YTTRIA-四方氧化锆多晶(Y-TZP),采用研磨系统。沿着纵向轴线切割所有样品,并在每个基台的右侧和左侧的边缘和肩部区域测量它们的适应。使用立体显微镜(X60倍率)和扫描电子显微镜(X800倍率)进行测量。使用单向分析和Bonferroni后Hoc测试进行分析数据,其显着性截止值为5%。在第3组和其他组之间观察到显着差异(P <0.05)。边缘开口与CO-CR合金副结构最小,而肩部开口与Ni-Cr合金亚结构最小。在该研究的局限内,FDP的边缘拟合优于通过SLM的快速原型设计(RP)而不是传统的制造系统。

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