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CAD/CAM 全瓷修复材料在天然牙中的应用。

CAD/CAM Ceramic Restorative Materials for Natural Teeth.

机构信息

1 Department of Prosthodontics, School of Dentistry, Heinrich-Heine-University, Düsseldorf, Germany.

出版信息

J Dent Res. 2018 Sep;97(10):1082-1091. doi: 10.1177/0022034518779759. Epub 2018 Jun 15.

Abstract

Advances in computer-aided design (CAD) / computer-aided manufacturing (CAM) technologies and their ease of application enabled the development of novel treatment concepts for modern prosthodontics. This recent paradigm shift in fixed prosthodontics from traditional to minimally invasive treatment approaches is evidenced by the clinical long-term success of bonded CAD/CAM glass-ceramic restorations. Today, defect-oriented restorations, such as inlays, onlays, and posterior crowns, are predominately fabricated from glass-ceramics in monolithic application. The variety of CAD/CAM ceramic restorative systems is constantly evolving to meet the increased demands for highly aesthetic, biocompatible, and long-lasting restorations. Recently introduced polymer-infiltrated ceramic network CAD/CAM blocks add innovative treatment options in CAD/CAM chairside 1-visit restorations. The material-specific high-edge stability enables the CAD/CAM machinability of thin restoration margins. Full-contour zirconia restorations are constantly gaining market share at the expense of bilayered systems. Advancements in material science and bonding protocols foster the development of novel material combinations or fabrication techniques of proven high-strength zirconia ceramics. CAD/CAM applications offer a standardized manufacturing process resulting in a reliable, predictable, and economic workflow for individual and complex teeth-supported restorations. More evidence from long-term clinical studies is needed to verify the clinical performance of monolithic polymer-infiltrated ceramic network and zirconia teeth-supported minimally invasive and extensive restorations.

摘要

计算机辅助设计(CAD)/计算机辅助制造(CAM)技术的进步及其应用的便利性使得现代修复体治疗的新概念得以发展。固定修复学从传统的微创治疗方法的这种最新范式转变,从临床长期成功的粘结 CAD/CAM 玻璃陶瓷修复体中得到了证明。如今,以缺陷为导向的修复体,如嵌体、高嵌体和后牙冠,主要由玻璃陶瓷制成,应用于整体式修复。CAD/CAM 陶瓷修复系统的种类不断发展,以满足对高度美观、生物相容性和耐用性修复体的需求增加。最近推出的聚合物渗透陶瓷网络 CAD/CAM 块在 CAD/CAM 椅旁 1 次就诊修复中增加了创新的治疗选择。特定材料的高边缘稳定性使 CAD/CAM 加工薄修复边缘成为可能。全锆修复体不断获得市场份额,而双层系统则逐渐减少。材料科学和粘结协议的进步促进了新型材料组合或经过验证的高强度氧化锆陶瓷的制造技术的发展。CAD/CAM 应用提供了标准化的制造工艺,为个体化和复杂的牙支持修复体带来了可靠、可预测和经济的工作流程。需要更多来自长期临床研究的证据来验证整体式聚合物渗透陶瓷网络和氧化锆牙支持微创和广泛修复体的临床性能。

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