Alharbi Nawal, Wismeijer Daniel, Osman Reham B
Int J Prosthodont. 2017 September/October;30(5):474–484. doi: 10.11607/ijp.5079. Epub 2017 Jul 27.
The aim of this article was to critically review the current application of additive manufacturing (AM)/3D-printing techniques in prosthodontics and to highlight the influence of various technical factors involved in different AM technologies.
A standard approach of searching MEDLINE, EMBASE, and Google Scholar databases was followed. The following search terms were used: (Prosth* OR Restoration) AND (Prototype OR Additive Manufacture* OR Compute* OR 3D-print* OR CAD/CAM) AND (Dentistry OR Dental). Hand searching the reference lists of the included articles and personal connections revealed additional relevant articles. Selection criteria were any article written in English and reporting on the application of AM in prosthodontics from 1990 to February 2016.
From a total of 4,290 articles identified, 33 were seen as relevant. Of these, 3 were narrative reviews, 18 were in vitro studies, and 12 were clinical in vivo studies. Different AM technologies are applied in prosthodontics, directly and indirectly for the fabrication of fixed metal copings, metal frameworks for removable partial dentures, and plastic mock-ups and resin patterns for further conventional metal castings. Technical factors involved in different AM techniques influence the overall quality, the mechanical properties of the printed parts, and the total cost and manufacturing time.
AM is promising and offers new possibilities in the field of prosthodontics, though its application is still limited. An understanding of these limitations and of developments in material science is crucial prior to considering AM as an acceptable method for the fabrication of dental prostheses.
本文旨在严格审视增材制造(AM)/3D打印技术在口腔修复学中的当前应用,并突出不同增材制造技术中涉及的各种技术因素的影响。
遵循检索MEDLINE、EMBASE和谷歌学术数据库的标准方法。使用了以下检索词:(口腔修复或修复体)与(原型或增材制造或计算机或3D打印或CAD/CAM)与(牙科或牙科学)。通过人工检索纳入文章的参考文献列表以及个人人脉关系,发现了其他相关文章。选择标准为1990年至2016年2月期间以英文撰写且报道增材制造在口腔修复学中应用的任何文章。
在总共识别出的4290篇文章中,33篇被视为相关。其中,3篇为叙述性综述,18篇为体外研究,12篇为临床体内研究。不同的增材制造技术被应用于口腔修复学中,直接或间接地用于制作固定金属基底冠、可摘局部义齿的金属支架,以及用于进一步传统金属铸造的塑料模型和树脂铸型。不同增材制造技术中涉及的技术因素会影响整体质量、打印部件的机械性能、总成本和制造时间。
增材制造前景广阔,在口腔修复学领域提供了新的可能性,尽管其应用仍然有限。在将增材制造视为制作牙科修复体的可接受方法之前,了解这些局限性以及材料科学的发展至关重要。