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1 "Valérie Chevalier"
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Research Article
Comparison of the cyclic fatigue resistance of One Curve, F6 Skytaper, Protaper Next, and Hyflex CM endodontic files
Charlotte Gouédard, Laurent Pino, Reza Arbab-Chirani, Shabnam Arbab-Chirani, Valérie Chevalier
Restor Dent Endod 2022;47(2):e16.   Published online March 4, 2022
DOI: https://doi.org/10.5395/rde.2022.47.e16
AbstractAbstract PDFPubReaderePub
Objectives

This study compared the cyclic fatigue resistance of One Curve (C wire) and F6 Skytaper (conventional austenite nickel-titanium [NiTi]), and 2 instruments with thermo-mechanically treated NiTi: Protaper Next X2 (M wire) and Hyflex CM (CM wire).

Materials and Methods

Ten new instruments of each group (size: 0.25 mm, 6% taper in the 3 mm tip region) were tested using a rotary bending machine with a 60° curvature angle and a 5 mm curvature radius, at room temperature. The number of cycles until fracture was recorded. The length of the fractured instruments was measured. The fracture surface of each fragment was examined with a scanning electron microscope (SEM). The data were analyzed using one-way analysis of variance and the post hoc Tukey test. The significance level was set at 0.05.

Results

At 60°, One Curve, F6 Skytaper and Hyflex CM had significantly longer fatigue lives than Protaper Next X2 (p < 0.05). No statistically significant differences were found in the cyclic fatigue lives of One Curve, F6 Skytaper, and Hyflex CM (p > 0.05). SEM images of the fracture surfaces of the different instruments showed typical features of fatigue failure.

Conclusions

Within the conditions of this study, at 60° and with a 5 mm curvature radius, the cyclic fatigue life of One Curve was not significantly different from those of F6 Skytaper and Hyflex CM. The cyclic fatigue lives of these 3 instruments were statistically significantly longer than that of Protaper Next.

Citations

Citations to this article as recorded by  
  • Evaluation of cyclic fatigue in three pediatric endodontic rotary file systems in root canals of primary molars: A finite element analysis (FEA)
    Monika sri S.S., K.C. Vignesh, K. Vivek, Kavitha Swaminathan, Selvakumar Haridoss
    Journal of Oral Biology and Craniofacial Research.2025; 15(2): 310.     CrossRef
  • Stress analysis of different experimental finite element models of rotary endodontic instruments
    Manar M. Galal, Amira Galal Ismail, Nada Omar
    Bulletin of the National Research Centre.2025;[Epub]     CrossRef
  • Understanding Cyclic Fatigue in Three Nickel–Titanium Pediatric Files: An In Vitro Study for Enhanced Patient Care
    Alwaleed Abushanan, Rajashekhara Bhari Sharanesha, Fahd Aljarbou, Hadi Alamri, Mohammed Hamad Almasud, Abdulfatah AlAzmah, Sara Alghamdi, Mubashir Baig Mirza
    Medicina.2025; 61(5): 830.     CrossRef
  • Analyzing Surface Morphology Changes Induced by Cyclic Fatigue in Three Different Nickel–Titanium Rotary Files Using Scanning Electron Microscopy Analysis
    Chintan Joshi, Mahima P Jain, Sweety M Thumar, Jay H Dave, Applu R Bhatt, Juhi I Dholani
    World Journal of Dentistry.2024; 15(7): 579.     CrossRef
  • Nickel ion release and surface analyses on instrument fragments fractured beyond the apex: a laboratory investigation
    Sıdıka Mine Toker, Ekim Onur Orhan, Arzu Beklen
    BMC Oral Health.2023;[Epub]     CrossRef
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