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牙齿结构的组织解剖学3D打印

Histo-anatomic 3D printing of dental structures.

作者信息

Schweiger J, Beuer F, Stimmelmayr M, Edelhoff D, Magne P, Güth J F

机构信息

Ludwig-Maximilians-University, Department of Prosthodontics, Goethestraße 70, Munich, 80336.

Charité - Universitätsmedizin Berlin, Department of Prostodontics, Berlin, 14197.

出版信息

Br Dent J. 2016 Nov 4;221(9):555-560. doi: 10.1038/sj.bdj.2016.815.

Abstract

The creation of dental restorations with natural appearance and biomechanics represents a major challenge for the restorative team. The manufacturing-process of high-aesthetic restorations from tooth-coloured restorative materials is currently dominated by manual manufacturing procedures and the outcome is highly dependent on the knowledge and skills of the performing dental technician. On the other hand, due to the simplicity of the manufacturing process, CAD/CAM restorations from different material classes gain more and more acceptance in the daily routine. Multi-layered restorations show significant aesthetic advantages versus monolithic ones, but are difficult to fabricate using digital technologies. The key element for the successful automated digital fabrication of aesthetic anterior restorations seems to be the form of the individual dentine core as defined by dentine enamel junction (DEJ) covered by a more transparent layer of material imitating the enamel layer to create the outer enamel surface (OES). This article describes the possibilities and technologies available for so-called '4D-printing'. It introduces the digital manufacturing process of multilayered anterior teeth using 3D multipart printing, taking the example of manufacturing replicas of extracted intact natural teeth.

摘要

制造出外观自然且具备生物力学性能的牙齿修复体,对修复团队而言是一项重大挑战。目前,使用牙齿颜色修复材料制造高美观度修复体的过程主要依赖手工制作,其结果高度依赖执行操作的牙科技师的知识和技能。另一方面,由于制造过程简单,不同材料类别的CAD/CAM修复体在日常工作中越来越受到认可。多层修复体相对于整体修复体具有显著的美学优势,但使用数字技术制造却很困难。成功实现美观前牙自动化数字制造的关键要素似乎是由牙本质釉质界(DEJ)定义的单个牙本质核的形态,该牙本质核由模仿釉质层的更透明材料层覆盖,以创建外釉质表面(OES)。本文描述了所谓“4D打印”可用的可能性和技术。它以制造完整拔除天然牙的复制品为例,介绍了使用3D多部件打印制造多层前牙的数字制造过程。

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