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The step further smile virtual planning: milled versus prototyped mock-ups for the evaluation of the designed smile characteristics

机译:步骤进一步微笑虚拟规划:用于评估设计的微笑特征的铣削与原型模拟

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Mock-up based approach allows the preview of the aesthetic rehabilitation, however, it is crucial that the mock-up does not differ from the expected aesthetic outcomes. With CAD-CAM technologies, it is possible to directly create mock-ups from virtual planned smile project, with greater accuracy and efficiency compared to the conventional moulded mock-ups. In this study, we investigated the trueness of mock-ups obtained with milling and 3D printing technology and a full digital work-flow system. Ten adults subjects were included and digital smile design/digital wax-up were performed to enhance the aesthetic of maxillary anterior region. Ten milled mock-ups and 10 prototyped mock-ups were obtained from the original .stl file and a digital analysis of trueness was carried out by superimposing the scanned-milled mock-ups and the scanned-prototyped mock-ups to the digital wax-up, according to the surface-to-surface matching technique. Specific linear measurements were performed to investigate and compare the dimensional characteristics of the physical manufactures, the 3D project and the scanned mock-ups. All data were statistically analyzed. A clinical test was also performed to assess the fitting of the final manufacture. The prototyped mock-ups showed a significant increment of the transversal measurements (p??0.001) while the milled mock-ups showed a significant increment of all vertical and transversal measurements (p??0.001). The prototyped mock-ups showed good fitting after clinical tests while none of the milled mock-ups showed good adaptation (no fitting or significant clinical compensation required). Deviation analysis from the original 3D project reported a greater matching percentage for the scanned-milled mock-ups (80,31%?±?2.50) compared to the scanned-prototyped mock-ups (69,17%?±?2.64) (p??0.001). This was in contrast with the findings from linear measurements as well as from the clinical test and may have been affected by a reductive algorithmic computation after digitization of physical mock-ups. Both prototype and milled mock-ups showed a slight dimensional increment comparing to the original 3D project, with milled-mock-ups showing less fitting after clinical tests. Caution must be taken when assessing the trueness of scanned manufacture since an intrinsic error in the system can underestimate the dimensions of the real object.
机译:基于模拟的方法可以预览美学康复,但是,模拟与预期的美学结果不同至关重要。通过CAD-CAM技术,与传统的模型模型相比,可以直接从虚拟计划的微笑项目中创建模型,更高的准确性和效率。在这项研究中,我们调查了用铣削和3D印刷技术和全数字工作流系统获得的模型的真实性。包括十个成人受试者,并进行数字微笑设计/数字蜡,以增强上颌前部区域的美学。从原始的.stl文件中获得了十个碾碎的模型和10个原型模型。通过叠加扫描研磨的模型和扫描的原型模拟到数字蜡来进行数字分析。根据表面到表面匹配技术。进行特定的线性测量以研究和比较物理制造商,3D项目和扫描模拟的尺寸特征。所有数据都在统计上分析。还进行了临床试验以评估最终制造的配件。原型模型显示出横向测量的显着增量(P?<0.001),而碾磨的模型显示出所有垂直和横向测量的显着增量(P?<0.001)。原型模型在临床测试后显示出良好的配件,而碾磨模拟均未显示出良好的适应(不需要配件或显着的临床补偿)。与扫描 - 原型模拟相比,原始3D项目的偏差分析报告了扫描研磨的模型的匹配百分比(80,31%?±2.5​​0)(69,17%?±2.64)( p?<?0.001)。这与线性测量结果以及从临床测试的发现相反,并且可能已经受到物理模型的数字化后的还原算法计算的影响。原型和碾磨的模型均显示出与原始3D项目相比的轻微尺寸增量,碾磨模拟显示在临床试验后显示较少的配件。在评估扫描制造的真实时,必须小心,因为系统中的内在误差可以低估真实对象的尺寸。

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