Testarelli L, Grande N M, Plotino G, Lendini M, Pongione G, Paolis G De, Rizzo F, Milana V, Gambarini G
Department of Dental Science, Sapienza University of Rome, Italy.
Open Dent J. 2009 Apr 16;3:55-8. doi: 10.2174/1874210600903010055.
Since the introduction of nickel-titanium alloy to endodontics, there have been many changes in instrument design, but no significant improvements in the raw material properties, or enhancements in the manufacturing process. Recently, a new method to produce nickel-titanium rotary (NTR) instruments has been developed, in an attempt to obtain instruments that are more flexible and resistant to fatigue. NTR instruments produced using the process of twisting (TF, SybronEndo, Orange, CA) were compared to NTR instruments from different manufacturers produced by a traditional grinding process. The aim of the study was to investigate whether cyclic fatigue resistance is increased for TF NTR files. Tests were performed with a cyclic fatigue device that evaluated cycles to failure of rotary instruments inside curved artificial canals. Results indicated that size 06-25 TF instruments showed a significant increase (P< .05). In the mean number of cycles to failurewhen compared to the other tested 06-25 NTR. Hence, it can be concluded that size 06-25 TF NTR instruments were found to be significantly more resistant to fatigue than those produced with the traditional grinding process.
自从镍钛合金被引入牙髓病学领域以来,器械设计发生了许多变化,但原材料性能并无显著改进,制造工艺也没有提升。最近,一种生产镍钛旋转器械(NTR)的新方法被开发出来,旨在获得更具柔韧性和抗疲劳性的器械。将采用扭转工艺(TF,SybronEndo,加利福尼亚州奥兰治)生产的NTR器械与不同制造商采用传统磨削工艺生产的NTR器械进行比较。该研究的目的是调查TF NTR锉的抗循环疲劳能力是否有所提高。使用循环疲劳装置进行测试,该装置评估旋转器械在弯曲人工根管内直至失效的循环次数。结果表明,06 - 25号TF器械在与其他测试的06 - 25号NTR相比时,失效循环的平均次数有显著增加(P <.05)。因此,可以得出结论,发现06 - 25号TF NTR器械比采用传统磨削工艺生产的器械具有显著更高的抗疲劳能力。