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Digital denture manufacturing - Application of abrasive computer tomography, CNC machining, and rapid prototyping technologies

机译:数字义齿制造 - 磨料计算机断层扫描,CNC加工和快速原型技术的应用

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The fixed partial denture produced by conventional method is greatly relied on the skill and experience of dental technician. Its quality and accuracy depends mostly on the technician's subjective judgment. In addition, the manual process involves many procedures which require a long time to complete. Most important, it does not preserve any quantitative information for future retrieval. In this article, a new device for scanning denture images and reconstructing 3D digital information of dental model by abrasive computer tomography (ACT) was designed and proposed. The fixed partial denture was then suggested to be produced by the rapid prototyping (RP) and computer numerical control (CNC) machining methods based on the digital information. A force feedback sculptor (FreeForm system, Sensible Technologies Inc., USA), using 3D Touch technology was applied to modify the morphology or design of denture. In this article, the comparison of conventional manual operation, digital manufacture using RP and CNC machining technologies for denture production was presented and the digital denture manufacturing protocol using proposed computer abrasive teeth profile scanning, computer-aided denture design, 3D touchable feature modification and numerical denture manufacturing were reported. These proposed methods provide a solid evidence that digital design and manufacturing technologies may become a new avenue for custom-made denture design, analysis, and production in 21st century.
机译:通过常规的方法制造的固定义齿大大依赖于技术人员和牙科技师的经验。它的质量和精度主要取决于技术人员的主观判断。此外,手动过程涉及这需要很长的时间才能完成许多程序。最重要的是,它不保留以备将来检索的任何定量信息。在这篇文章中,对于通过磨料计算机断层摄影(ACT)扫描义齿图像和重建牙齿模型的3D数字信息的新设备的设计和建议。然后,将固定义齿有人建议通过基于所述数字信息的快速成型(RP)和计算机数字控制(CNC)机加工的方法来制造。力反馈雕刻家(自由曲面系统,感性Technologies公司,美国),采用3D触摸技术应用于修改形态或假牙的设计。在本文中,传统的手动操作时,数字化制造的使用RP和用于义齿制造数控加工技术的比较,提出和数字化义齿制造协议使用提出的计算机磨料齿廓扫描,计算机辅助假牙设计,三维可触摸特征修改和数值据报道义齿制造。这些建议的方法提供了坚实的证据表明,数字化设计和制造技术有可能成为定制义齿的设计,分析和制作在二十一世纪的新途径。

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