What is the Impact of Impression Techniques on the Marginal Adaptation of Metal-Ceramic Crowns Fabricated by Direct Metal Laser-Sintering

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Abstract

Introduction: Studies on Marginal adaptation of restorations fabricated by direct metal laser-sintering DMLS are limited. This study to evaluate the effect of two impression techniques on the marginal adaptation of metal ceramic crowns fabricated by DMLS. Materials and Methods: Twenty intact maxillary premolars extracted for orthodontics reasons were received metal-ceramic crowns. After preparation according to the preparation guidelines for metal-ceramic crowns, the teeth were divided into two groups according to impression techniques (n=10): (1) group A IOS impression, (2) group B conventional impression. Group A specimens were scanned using IOS (I 500, MEDIT, Korea). Whereas, a custom-made tray used to make putty-wash impression to the specimens of group B. Group B casts were scanned using extraoral scanner (Identica T300, META, Korea). The metal coping designs were transferred to a direct metal laser-sintering (MYSINT100, SISMA, Italy), and they were made from Co-Cr blocks. The marginal adaptation was measured at labial, palatal, misael, and distal surfaces using microscope (Olympus, Japan). Student’s paired t test was used to assess the marginal adaptation between the groups. The cutoff value for statistical significance was set at α = 0.05. Results: A statistically significant differences in marginal adaptation was found between the impression techniques for all evaluations (labial, palatal, misael, and distal) (P<0.05). The lowest values were recorded with IOS impression in all surfaces. Conclusions: the marginal adaptation values of IOS impression exhibited an acceptable marginal fit of less than 120 μm
压印技术对直接金属激光烧结金属陶瓷冠的边缘适应性有何影响
简介:直接金属激光烧结DMLS修复体的边缘适应性研究有限。本研究评价两种压印技术对DMLS金属陶瓷冠边缘自适应的影响。材料与方法:对20颗因正畸拔出的完整上颌前磨牙进行金属陶瓷冠修复。按照金属陶瓷冠预备指南进行预备后,根据印模技术分为两组(n=10):(1) A组IOS印模,(2)B组常规印模。A组标本采用IOS (i500, MEDIT, Korea)扫描。然而,B组的模型使用定制的托盘进行灰洗印模。B组的模型使用口外扫描仪进行扫描(Identica T300, META, Korea)。金属顶部设计被转移到直接金属激光烧结(MYSINT100, SISMA,意大利),它们由Co-Cr块制成。使用显微镜测量唇、腭、下颌和远端表面的边缘适应(Olympus, Japan)。采用学生配对t检验评估各组间的边际适应。统计学显著性的临界值设为α = 0.05。结果:在所有评估(唇、腭、下颌和远端)的印模技术之间,边缘适应性有统计学意义的差异(P<0.05)。在所有表面上用IOS印模都记录了最低的数值。结论:IOS印模的边际拟合值小于120 μm,可接受
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