Mena-Álvarez Jesús, Almanzor-López Manuel, Quispe-López Norberto, De Pedro-Muñoz Ana, Rico-Romano Cristina
Department of Endodontics, Faculty of Dentistry, Alfonso X El Sabio University, 28691 Madrid, Spain.
Materials (Basel). 2022 Jun 24;15(13):4443. doi: 10.3390/ma15134443.
Aim: The aim of this study was to compare the cyclic fatigue strength of different reciprocating rotary systems depending on the movement used. Methods: Four study groups were analyzed (n = 30): (1) Reciproc®, (2) Reciproc Blue®, (3) Wave One Gold® and (4) Procodile®. Each group was divided into three subgroups according to the motion used: (A) Reflex Dynamic® (n = 10), (B) ReFlex Smart® (n = 10) and (C) conventional reciprocating motion (n = 10). They were used in a dynamic cyclic fatigue prototype until their fracture, and the time was measured in seconds. The results obtained were analyzed with the ANOVA method, and for two-to-two comparisons, the Tukey method and Weibull statistics were used. Results: Procodile ReFlex Smart had the longest time to failure, and statistically significant differences were found between Procodile ReFlex Smart and the other files and motions (p < 0.05). Conclusion: Smart motions increase cyclic fatigue strength. ReFlex Smart® motion increases the cyclic fatigue strength of reciprocating rotary systems, and Procodile® ReFlex Smart was the most resistant system file.
本研究旨在根据所使用的运动方式比较不同往复旋转系统的循环疲劳强度。方法:分析了四个研究组(n = 30):(1)Reciproc®,(2)Reciproc Blue®,(3)Wave One Gold®和(4)Procodile®。根据所使用的运动方式,每组又分为三个亚组:(A)Reflex Dynamic®(n = 10),(B)ReFlex Smart®(n = 10)和(C)传统往复运动(n = 10)。将它们用于动态循环疲劳原型直至其断裂,并以秒为单位测量时间。使用方差分析方法对获得的结果进行分析,对于两两比较,使用Tukey方法和威布尔统计量。结果:Procodile ReFlex Smart的失效时间最长,并且在Procodile ReFlex Smart与其他锉和运动之间发现了统计学上的显著差异(p < 0.05)。结论:智能运动可提高循环疲劳强度。ReFlex Smart®运动可提高往复旋转系统的循环疲劳强度,并且Procodile® ReFlex Smart是最具抗性的系统锉。