Stoilov Milan, Boehmer Tobias, Stoilov Lea, Stark Helmut, Marder Michael, Enkling Norbert, Kraus Dominik
Department of Prosthodontics, Preclinical Education and Dental Materials Science, Bonn University, 53111 Bonn, Germany.
Department of Reconstructive Dentistry and Gerodontology, Bern University, 3012 Bern, Switzerland.
J Clin Med. 2024 Feb 19;13(4):1165. doi: 10.3390/jcm13041165.
: Classic endocrowns made of dental ceramics are considered a promising alternative to traditional post-endodontic restorations. The use of circular ferrules in endocrowns is a topic of controversial discussion. Therefore, the present study aims to evaluate the effect of ferrule design and cementation mode on the fatigue resistance of zirconia endocrowns. : Eighty human molars were divided into four groups ( = 20): NFC (no-ferrule, conventional cementation), NFA (no-ferrule, adhesive luting), FC (ferrule, conventional cementation) and FA (ferrule, adhesive luting). Both the classic and the modified endocrown preparation with a two-millimeter ferrule design were carried out. Endocrowns were fabricated from zirconia using the CEREC system. After thermocycling, specimens were loaded according to the step-stress test up to 1500 N. : Failure rate was low; 88.8% of total specimens passed the step-stress test. Fractures were distributed between all groups; no significant differences in fatigue resistance were detected for preparation design and cementation mode. : Endocrowns appear to be a promising concept for endodontically treated molars. Ferrule and also cementation mode have only a minor influence on fatigue resistance of zirconia endocrowns. However, at very high forces, the marginal area of the ferrule represents a weak point.
由牙科陶瓷制成的经典内冠被认为是传统根管治疗后修复体的一种有前景的替代方案。在内冠中使用圆形箍圈是一个存在争议的讨论话题。因此,本研究旨在评估箍圈设计和粘结方式对氧化锆内冠抗疲劳性能的影响。
80颗人类磨牙被分为四组(每组n = 20):NFC(无箍圈,传统粘结)、NFA(无箍圈,粘结剂粘结)、FC(有箍圈,传统粘结)和FA(有箍圈,粘结剂粘结)。采用经典和改良的带有两毫米箍圈设计的内冠制备方法。使用CEREC系统由氧化锆制作内冠。热循环后,根据逐步加载试验对标本施加高达1500 N的载荷。
失败率较低;88.8%的标本通过了逐步加载试验。骨折分布在所有组中;在制备设计和粘结方式方面未检测到抗疲劳性能的显著差异。
内冠似乎是根管治疗后磨牙的一个有前景的概念。箍圈以及粘结方式对氧化锆内冠的抗疲劳性能影响较小。然而,在非常高的力作用下,箍圈的边缘区域是一个薄弱点。