Komine Futoshi, Kamio Shingo, Takata Hiroki, Yagawa Shogo, Taguchi Serina, Taguchi Kohei, Hashiguchi Akiko, Matsumura Hideo
Department of Fixed Prosthodontics, Nihon University School of Dentistry.
Private Practice, Oshima Dental Clinic.
Dent Mater J. 2018 Jan 30;37(1):78-86. doi: 10.4012/dmj.2017-057. Epub 2017 Sep 7.
This study evaluated the effect of zirconia framework design on fracture load of implant-supported zirconia-based prostheses after thermal cycling and mechanical loading. Three different zirconia framework designs were investigated: uniform-thickness (UNI), anatomic (ANA), and supported anatomic (SUP) designs. Each framework was layered with feldspathic porcelain (ZAC group) or indirect composite material (ZIC group). The specimens then underwent fracture load testing after thermal cycling and cyclic loading. In the ZAC group, mean fracture load was significantly lower for UNI design specimens than for the other framework designs. In the ZIC group, there was no significant difference in mean fracture load between ANA design specimens and either UNI or SUP design specimens. To improve fracture resistance of implant-supported zirconia-based prostheses after artificial aging, uniformly thick layering material and appropriate lingual support with zirconia frameworks should be provided.
本研究评估了氧化锆框架设计对热循环和机械加载后种植体支持的氧化锆基修复体断裂载荷的影响。研究了三种不同的氧化锆框架设计:均匀厚度(UNI)设计、解剖学(ANA)设计和支撑解剖学(SUP)设计。每个框架都覆盖有长石质瓷(ZAC组)或间接复合材料(ZIC组)。然后,在热循环和循环加载后对标本进行断裂载荷测试。在ZAC组中,UNI设计标本的平均断裂载荷显著低于其他框架设计。在ZIC组中,ANA设计标本与UNI或SUP设计标本之间的平均断裂载荷没有显著差异。为提高人工老化后种植体支持的氧化锆基修复体的抗断裂性,应提供均匀厚度的覆盖材料,并使用氧化锆框架提供适当的舌侧支撑。