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首页> 外文期刊>The International journal of prosthodontics >Integration of laser surface digitizing with CAD/CAM techniques for developing facial prostheses. Part 2: Development of molding techniques for casting prosthetic parts.
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Integration of laser surface digitizing with CAD/CAM techniques for developing facial prostheses. Part 2: Development of molding techniques for casting prosthetic parts.

机译:将激光表面数字化与CAD / CAM技术集成在一起以开发面部假体。第2部分:铸造假肢的成型技术的发展。

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PURPOSE: This article presents a novel manufacturing approach that integrates laser surface digitizing/scanning and computer-aided design and manufacturing (CAD/CAM) to achieve automated fabrication of spatially and anatomically accurate extraoral facial prostheses. MATERIALS AND METHODS: Contrary to the approach in part 1 for fabricating positive replicas of prostheses, the approaches presented here are focused on designing and producing negative molds of the final prostheses using CAD, rapid prototyping, and rapid tooling techniques. The molds were applied directly to cast the final prostheses, thereby eliminating conventional flasking and investing procedures. RESULTS: Three different facial prostheses were produced to evaluate the proposed approach for prosthesis production. The advantages of this alternative manufacturing approach over the approach presented in part 1 and conventional techniques are discussed. The limitations encountered with the integrated manufacturing system are highlighted. CONCLUSION: With the new techniques, reduced patient discomfort, minimal dependence on the artistic skills of the prosthetist, and short turnaround times for prosthesis production can be expected.
机译:目的:本文提出了一种新颖的制造方法,该方法将激光表面数字化/扫描和计算机辅助设计与制造(CAD / CAM)集成在一起,以实现空间和解剖学准确的口腔外假体的自动制造。材料和方法:与第1部分中制造假体正复制品的方法相反,此处介绍的方法重点在于使用CAD,快速原型制作和快速加工技术设计和生产最终假体的阴模。直接将模具用于铸造最终的假体,从而省去了常规的瓶磨和投资程序。结果:制作了三种不同的面部假体,以评估所提出的假体生产方法。讨论了这种替代制造方法相对于第1部分中介绍的方法和常规技术的优点。突出了集成制造系统遇到的限制。结论:利用新技术,可以减少患者的不适感,对假肢专家的艺术技能的依赖性最小,并且可以缩短假肢生产的周转时间。

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