Rezaie Fereshte, Farshbaf Masoud, Dahri Mohammad, Masjedi Moein, Maleki Reza, Amini Fatemeh, Wirth Jonathan, Moharamzadeh Keyvan, Weber Franz E, Tayebi Lobat
Department of Endodontic, Faculty of Dentistry, Tabriz University of Medical Sciences, Tabriz P.O. Box 5163639888, Iran.
Department of Medical Nanotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz P.O. Box 5163639888, Iran.
J Compos Sci. 2023 Feb;7(2). doi: 10.3390/jcs7020080. Epub 2023 Feb 15.
Revolutionary fabrication technologies such as three-dimensional (3D) printing to develop dental structures are expected to replace traditional methods due to their ability to establish constructs with the required mechanical properties and detailed structures. Three-dimensional printing, as an additive manufacturing approach, has the potential to rapidly fabricate complex dental prostheses by employing a bottom-up strategy in a layer-by-layer fashion. This new technology allows dentists to extend their degree of freedom in selecting, creating, and performing the required treatments. Three-dimensional printing has been narrowly employed in the fabrication of various kinds of prostheses and implants. There is still an on-demand production procedure that offers a reasonable method with superior efficiency to engineer multifaceted dental constructs. This review article aims to cover the most recent applications of 3D printing techniques in the manufacturing of dental prosthetics. More specifically, after describing various 3D printing techniques and their advantages/disadvantages, the applications of 3D printing in dental prostheses are elaborated in various examples in the literature. Different 3D printing techniques have the capability to use different materials, including thermoplastic polymers, ceramics, and metals with distinctive suitability for dental applications, which are discussed in this article. The relevant limitations and challenges that currently limit the efficacy of 3D printing in this field are also reviewed. This review article has employed five major scientific databases, including Google Scholar, PubMed, ScienceDirect, Web of Science, and Scopus, with appropriate keywords to find the most relevant literature in the subject of dental prostheses 3D printing.
诸如三维(3D)打印等用于制作牙齿结构的革命性制造技术,因其能够制造出具有所需机械性能和精细结构的构建体,有望取代传统方法。三维打印作为一种增材制造方法,有潜力通过自下而上的逐层策略快速制造复杂的牙齿修复体。这项新技术使牙医在选择、创建和实施所需治疗方面有了更大的自由度。三维打印已被有限地应用于各种修复体和植入物的制造中。仍然需要一种按需生产程序,为设计多面牙齿构建体提供一种高效的合理方法。这篇综述文章旨在涵盖3D打印技术在牙齿修复体制造中的最新应用。更具体地说,在描述了各种3D打印技术及其优缺点之后,通过文献中的各种实例阐述了3D打印在牙齿修复体中的应用。不同的3D打印技术能够使用不同的材料,包括热塑性聚合物、陶瓷和金属,它们在牙科应用中具有独特的适用性,本文将对此进行讨论。还综述了目前限制3D打印在该领域效果的相关局限性和挑战。这篇综述文章使用了五个主要科学数据库,包括谷歌学术、PubMed、ScienceDirect、科学网和Scopus,并使用了适当的关键词来查找牙齿修复体3D打印主题中最相关的文献。