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Efficiency of a mathematical model in generating CAD/CAM-partial crowns with natural tooth morphology.

机译:数学模型在生成具有自然牙齿形态的CAD / CAM部分牙冠方面的效率。

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The "biogeneric tooth model" can be used for computer-aided design (CAD) of the occlusal surface of dental restorations. From digital 3D-data, it automatically retrieves a morphology matching the natural surface left after preparation. This study evaluates the potential of this method for generating well-matched and well-adjusted CAD/computer-aided manufacturing (CAM) fabricated partial crowns. Twelve models with partial crown preparations were mounted into an articulator. Partial crowns were designed with the Cerec 3D CAD software based on the biogeneric tooth model (Biog.CAD) and, for control, with a conventional data-based Cerec 3D CAD software (Conv.CAD). The design time was measured, and the naturalness of the morphology was visually assessed. The restorations were milled, cemented on the models, and the vertical discrepancy and the time for final occlusal adjustment were measured. The Biog.CAD software offered a significantly higher naturalness (up to 225 to 11 scores) and was significantly faster by 251 (+/- 78) s in designing partial crowns (p < 0.01) compared to Conv.CAD software. Vertical discrepancy, 0.52 (+/- 0.28) mm for Conv.CAD and 0.46 (+/- 0.19)mm for Biog.CAD, and occlusal adjustment time, 118 (+/- 132)s for Conv.CAD and 102 (+/- 77)s for Biog.CAD, did not differ significantly. In conclusion, the biogeneric tooth model is able to generate occlusal morphology of partial crowns in a fully automated process with higher naturalness compared to conventional interactive CAD software.
机译:“生物通用牙齿模型”可用于牙齿修复物咬合面的计算机辅助设计(CAD)。它从数字3D数据中自动检索与准备后剩余的自然表面相匹配的形态。这项研究评估了这种方法在生成匹配良好且调整良好的CAD /计算机辅助制造(CAM)制成的局部牙冠中的潜力。将十二个具有部分冠准备的模型安装到咬合架中。使用基于生物通用牙齿模型(Biog.CAD)的Cerec 3D CAD软件设计局部牙冠,并使用常规的基于数据的Cerec 3D CAD软件(Conv.CAD)设计局部牙冠。测量设计时间,并通过视觉评估形态的自然性。将修复体磨碎,固定在模型上,并测量垂直差异和最终咬合调整的时间。与Conv.CAD软件相比,Biog.CAD软件具有更高的自然度(高达225至11分),并且在设计局部牙冠方面的速度显着提高了251(+/- 78)s(p <0.01)。垂直差异,Conv.CAD为0.52(+/- 0.28)mm,Biog.CAD为0.46(+/- 0.19)mm,咬合调整时间,Conv.CAD为118(+/- 132)s和102(+ /-Biog.CAD的77)s没有显着差异。总之,与常规交互式CAD软件相比,生物通用牙齿模型能够在全自动过程中以更高的自然性生成部分冠的咬合形态。

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