Silva Lucas Hian da, Lima Erick de, Miranda Ranulfo Benedito de Paula, Favero Stéphanie Soares, Lohbauer Ulrich, Cesar Paulo Francisco
Universidade Cidade de São Paulo - Unicid, School of Dentistry, São Paulo, SP, Brazil.
Universidade de São Paulo - USP, School of Dentistry, Department of Biomaterials and Oral Biology, São Paulo, SP, Brazil.
Braz Oral Res. 2017 Aug 28;31(suppl 1):e58. doi: 10.1590/1807-3107BOR-2017.vol31.0058.
The evolution of computerized systems for the production of dental restorations associated to the development of novel microstructures for ceramic materials has caused an important change in the clinical workflow for dentists and technicians, as well as in the treatment options offered to patients. New microstructures have also been developed by the industry in order to offer ceramic and composite materials with optimized properties, i.e., good mechanical properties, appropriate wear behavior and acceptable aesthetic characteristics. The objective of this literature review is to discuss the main advantages and disadvantages of the new ceramic systems and processing methods. The manuscript is divided in five parts: I) monolithic zirconia restorations; II) multilayered dental prostheses; III) new glass-ceramics; IV) polymer infiltrated ceramics; and V) novel processing technologies. Dental ceramics and processing technologies have evolved significantly in the past ten years, with most of the evolution being related to new microstructures and CAD-CAM methods. In addition, a trend towards the use of monolithic restorations has changed the way clinicians produce all-ceramic dental prostheses, since the more aesthetic multilayered restorations unfortunately are more prone to chipping or delamination. Composite materials processed via CAD-CAM have become an interesting option, as they have intermediate properties between ceramics and polymers and are more easily milled and polished.
用于生产牙科修复体的计算机系统的发展与陶瓷材料新型微观结构的开发相关联,这给牙医和技术人员的临床工作流程以及为患者提供的治疗选择带来了重大变化。行业内还开发了新的微观结构,以提供具有优化性能的陶瓷和复合材料,即良好的机械性能、适当的磨损行为和可接受的美学特征。这篇文献综述的目的是讨论新型陶瓷系统和加工方法的主要优缺点。本文分为五个部分:I)整体式氧化锆修复体;II)多层牙科假体;III)新型微晶玻璃;IV)聚合物渗透陶瓷;V)新型加工技术。在过去十年中,牙科陶瓷和加工技术有了显著发展,大部分发展都与新的微观结构和CAD-CAM方法有关。此外,使用整体式修复体的趋势改变了临床医生制作全瓷牙科假体的方式,因为更美观的多层修复体不幸更容易出现崩瓷或分层。通过CAD-CAM加工的复合材料成为了一个有趣的选择,因为它们具有介于陶瓷和聚合物之间的中间性能,并且更容易进行研磨和抛光。