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使用数字技术且无需模拟印模制作带有合金部件的树脂矫治器。

Fabrication of a resin appliance with alloy components using digital technology without an analog impression.

作者信息

Al Mortadi Noor, Jones Quentin, Eggbeer Dominic, Lewis Jeffrey, Williams Robert J

机构信息

Assistant professor, Jordan University of Science and Technology, Irbid, Jordan.

Orthodontist, Cardiff University Dental School, Heath Park, Cardiff, United Kingdom.

出版信息

Am J Orthod Dentofacial Orthop. 2015 Nov;148(5):862-7. doi: 10.1016/j.ajodo.2015.06.014.

Abstract

The aim of this study was to fabricate a resin appliance incorporating "wire" components without the use of an analog impression and dental casts using an intraoral scanner and computer technology to build the appliance. This unique alignment of technology offers an enormous reduction in the number of fabrication steps when compared with more traditional methods of manufacture. The prototype incorporated 2 Adams clasps and a fitted labial bow. The alloy components were built from cobalt-chromium in an initial powdered form using established digital technology methods and then inserted into a build of a resin base plate. This article reports the first known use of computer-aided design and additive manufacture to fabricate a resin and alloy appliance, and constitutes proof of the concept for such manufacturing. The original workflow described could be seen as an example for many other similar appliances, perhaps with active components. The scan data were imported into an appropriate specialized computer-aided design software, which was used in conjunction with a force feedback (haptic) interface. The appliance designs were then exported as stereolithography files and transferred to an additive manufacturing machine for fabrication. The results showed that the applied techniques may provide new manufacturing and design opportunities in orthodontics and highlights the need for intraoral-specific additive manufacture materials to be produced and tested for biocompatibility compliance. In a trial, the retainer was fitted orally and judged acceptable by the clinician according to the typical criteria when placing such appliances in situ.

摘要

本研究的目的是制造一种包含“钢丝”部件的树脂矫治器,无需使用模型印模和石膏模型,而是利用口内扫描仪和计算机技术来制作矫治器。与更传统的制造方法相比,这种独特的技术组合极大地减少了制造步骤。该原型包含2个亚当斯卡环和一个贴合的唇弓。合金部件最初以粉末形式由钴铬合金制成,采用既定的数字技术方法,然后插入树脂基板的构建体中。本文报道了首次使用计算机辅助设计和增材制造来制造树脂和合金矫治器,并为此类制造提供了概念验证。所描述的原始工作流程可被视为许多其他类似矫治器(可能带有活动部件)的一个示例。扫描数据被导入到适当的专业计算机辅助设计软件中,该软件与力反馈(触觉)接口结合使用。然后将矫治器设计导出为立体光刻文件,并传输到增材制造机器进行制造。结果表明,所应用的技术可能为正畸学提供新的制造和设计机会,并突出了需要生产和测试口内专用增材制造材料以符合生物相容性标准。在一次试验中,该保持器在口腔中佩戴,临床医生根据在原位放置此类矫治器的典型标准判断其可接受。

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