Ha Seok-Joon, Cho Jin-Hyun
Department of Prosthodontics, School of Dentistry, Kyungpook National University, Daegu, Republic of Korea.
J Adv Prosthodont. 2016 Dec;8(6):439-448. doi: 10.4047/jap.2016.8.6.439. Epub 2016 Dec 15.
The purposes of this study are to evaluate the internal and marginal adaptation of two widely used CAD/CAM systems and to study the effect of porcelain press veneering process on the prosthesis adaptation.
Molar of a lower jaw typodont resin model was prepared by adjusting a 1.0 mm circumferential chamfer, an occlusal reduction of 2.0 mm, and a 5° convergence angle and was duplicated as an abrasion-resistant master die. The monolithic crowns and copings were fabricated with two different CAD/CAM system-Ceramil and Zirkonzahn systems. Two kinds of non-destructive analysis methods are used in this study. First, weight technique was used to determine the overall fitting accuracy. And, to evaluate internal and marginal fit of specific part, replica technique procedures were performed.
The silicone weight for the cement space of monolithic crowns and copings manufactured with Ceramil system was significantly higher than that from Zirkonzahn system. This gap might cause the differences in the silicone weight because the prostheses were manufactured according to the recommendation of each system. Marginal discrepancies of copings made with Ceramil system were between 106 and 117 µm and those from Zirkonzahn system were between 111 and 115 µm. Marginal discrepancies of copings made with Ceramil system were between 101 and 131 µm and those from Zirkonzahn system were between 116 and 131 µm.
Marginal discrepancy was relatively lower in Ceramil system and internal gap was smaller in Zirkonzahn system. There were significant differences in the internal gap of monolithic crown and coping among the 2 CAD/CAM systems. Marginal discrepancy produced from the 2 CAD/CAM systems were within a reported clinically acceptable range of marginal discrepancy.
本研究的目的是评估两种广泛使用的计算机辅助设计/计算机辅助制造(CAD/CAM)系统的内部和边缘适应性,并研究瓷贴面工艺对修复体适应性的影响。
通过调整1.0毫米的圆周倒角、2.0毫米的咬合面降低量和5°的聚合角,制备下颌典型牙列树脂模型的磨牙,并复制为耐磨母模。使用两种不同的CAD/CAM系统——Ceramil系统和Zirkonzahn系统制作整体冠和内冠。本研究采用两种无损分析方法。首先,使用重量技术确定整体贴合精度。并且,为了评估特定部位的内部和边缘贴合度,进行了复制技术程序。
Ceramil系统制造的整体冠和内冠的粘结剂空间的硅橡胶重量显著高于Zirkonzahn系统。由于修复体是根据每个系统的建议制造的,这种差异可能导致硅橡胶重量的不同。Ceramil系统制作的内冠边缘差异在106至117微米之间,Zirkonzahn系统制作的内冠边缘差异在111至115微米之间。Ceramil系统制作的整体冠边缘差异在101至131微米之间,Zirkonzahn系统制作的整体冠边缘差异在116至131微米之间。
Ceramil系统的边缘差异相对较低,Zirkonzahn系统的内部间隙较小。两种CAD/CAM系统制作的整体冠和内冠的内部间隙存在显著差异。两种CAD/CAM系统产生的边缘差异在报道的临床可接受边缘差异范围内。