Division of Endodontics, Faculty of Dentistry, The University of British Columbia (UBC), 2199 Wesbrook Mall, Vancouver, V6T1Z3, Canada.
Department of Conservative Dentistry & Endodontics, Guanghua School of Stomatology, Guangdong Province Key Laboratory of Stomatology, Sun Yat-Sen University Guangzhou, Guangzhou, China.
Clin Oral Investig. 2021 Jan;25(1):169-177. doi: 10.1007/s00784-020-03348-8. Epub 2020 Jun 2.
To determine the effect of the location of the canal curvature on the fatigue resistance of WaveOne (WO), WaveOne Gold (WOG), Reciproc (Rec), and Reciproc Blue (RecB) files, and to examine the phase transformation behaviors of the reciprocating file systems.
The instruments were subjected to fatigue testing in five artificial canals with a curvature of 60° angle and a 3-mm radius. The location of the curvature was unique for each canal. Each file was inserted 16 mm into the canal and operated until fracture occurred. The time to fracture was recorded and the length of the fragment was measured. Differential scanning calorimetry was used to characterize the thermal behavior of the files. The number of cycles to failure was analyzed using two-way analysis of variance and the post hoc Tukey test. The Kruskal-Wallis test was used to compare the mean fragment lengths between groups.
The instruments had significantly lower fatigue resistance in canals with curvatures in the middle and coronal canals compared with those with apical curvatures (p < 0.05). At all tested curvature locations, RecB had superior fatigue resistance compared with WO and Rec (p < 0.05). There were no significant differences between WOG and Rec in canals with curvatures in the middle and coronal canals. The DSC thermograms for RecB exhibit a single exothermic peak during cooling but double endothermic peaks during heating indicating that a two-step phase transformation from martensite to R-phase to austenite takes place.
The reciprocating instruments experience decreased cyclic fatigue resistance when operated in canals with coronal- and middle-third curvatures when compared with curvatures in the apical-third. Instrumenting coronally positioned curvatures with reciprocating files needs to be performed with caution.
The location of the root canal's curvature influences the fracture resistance of rotary files that are used with reciprocating movements. Therefore, caution needs to be exercised when using reciprocating instruments in canals with coronal or middle curvatures.
确定根管弯曲部位对 WaveOne(WO)、WaveOne Gold(WOG)、Reciproc(Rec)和 Reciproc Blue(RecB)锉疲劳性能的影响,并研究往复锉系统的相变行为。
将器械在 5 个弯曲角度为 60°、半径为 3mm 的人工根管中进行疲劳测试。每个根管的弯曲位置均不同。将每种锉插入根管 16mm 并操作至折断。记录折断时间,并测量断片长度。使用差示扫描量热法(DSC)来表征锉的热行为。使用双因素方差分析和事后 Tukey 检验分析失效循环数。使用 Kruskal-Wallis 检验比较组间平均断片长度。
与根尖弯曲根管相比,在中根管和冠根管中,器械的疲劳阻力明显降低(p<0.05)。在所有测试的弯曲位置,RecB 的疲劳阻力均优于 WO 和 Rec(p<0.05)。在中根管和冠根管中,WOG 和 Rec 之间没有显著差异。RecB 的 DSC 热图谱在冷却过程中表现出单个放热峰,但在加热过程中表现出两个吸热峰,表明马氏体到 R 相再到奥氏体的两步相变发生。
与根尖弯曲根管相比,在中根管和冠根管中进行操作时,往复锉的循环疲劳阻力降低。使用往复锉器械在根管的冠部和中部进行操作时需要谨慎。
根管弯曲部位影响与往复运动配合使用的旋转锉的抗折性能。因此,在根管的冠部或中部使用往复器械时需要谨慎。