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Influence of the CAD-CAM Systems on the Marginal Accuracy and Mechanical Properties of Dental Restorations

机译:CAD-CAM系统对牙齿修复的边缘精度和力学性能的影响

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摘要

The aim of this study was to compare the quality of different computer-assisted-design and computer assisted manufacturing systems (CAD-CAM) generated by only one scanner, focusing on vertical fit discrepancies and the mechanical properties. A master model was obtained from a real clinical situation: the replacement of an absent (pontic) tooth, with the construction of a fixed partial denture on natural abutments with three elements. Nine scans were performed by each tested and 36 copies were designed using a dental CAD-CAM software (Exocad). The frameworks were manufactured using three-axis and five-axis, with the same batch of the chrome-cobalt (CrCo) alloy. The frameworks were not cemented. A focus ion beam-high resolution scanning electron microscope (FIB-HRSEM) allowed us to obtain the vertical gap measurements in five points for each specimen. Roughness parameters were measured using white light interferometry (WLI). The samples were mechanically characterized by means of flexural tests. A servo-hydraulic testing machine was used with a cross-head rate of 1 mm/min. One-way ANOVA statistical analysis was performed to determine whether the vertical discrepancies and mechanical properties were significantly different between each group (significance level < 0.05). The overall mean marginal gap values ranged: from 92.38 ± 19.24 µm to 19.46 ± 10.20 µm, for the samples produced by three-axis and five-axis machines, respectively. Roughness was lower in the five-axis machine than the three-axis one, and as a consequence, the surface quality was better when the five-axis machine was used. These results revealed a statistically significant difference ( < 0.005) in the mean marginal gap between the CAD-CAM systems studied. The flexural strength for these restorations range from 6500 to 7000 N, and does not present any statistical differences’ significance between two CAD-CAM systems studied. This contribution suggests that the number of axes improves vertical fit and surface quality due to the lower roughness. These claims show some discrepancies with other studies.
机译:这项研究的目的是比较仅由一个扫描仪生成的不同计算机辅助设计和计算机辅助制造系统(CAD-CAM)的质量,重点是垂直配合差异和机械性能。从真实的临床情况中获得了一个主模型:替换缺失的(有齿的)牙齿,并在具有三个要素的天然基台上构建固定的局部义齿。每个测试进行了九次扫描,并使用牙科CAD-CAM软件(Exocad)设计了36个副本。框架是使用三轴和五轴制造的,并使用了同一批铬钴(CrCo)合金。框架没有被巩固。聚焦离子束高分辨率扫描电子显微镜(FIB-HRSEM)使我们能够获得每个样品五个点的垂直间隙测量值。使用白光干涉仪(WLI)测量粗糙度参数。通过弯曲试验对样品进行机械表征。使用伺服液压测试机,十字头速度为1 mm / min。进行了单向方差分析,以确定各组之间的垂直差异和力学性能是否存在显着差异(显着性水平<0.05)。对于三轴和五轴机器分别生产的样品,总的平均边际间隙值范围为:92.38±19.24 µm至19.46±10.20 µm。五轴加工机的粗糙度比三轴加工机低,因此,当使用五轴加工机时,表面质量更好。这些结果表明,所研究的CAD-CAM系统之间的平均边际间隙具有统计学显着性差异(<0.005)。这些修复体的抗弯强度范围从6500到7000 N,并且在所研究的两个CAD-CAM系统之间没有统计学差异。这一贡献表明,轴的数量由于较低的粗糙度而改善了垂直配合和表面质量。这些说法表明与其他研究存在一些差异。

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