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Cyclic fatigue resistance of the WaveOne Gold Glider, ProGlider, and the One G glide path instruments in double-curvature canals
Author(s) -
Damla Kırıcı,
Alper Kuştarcı
Publication year - 2019
Publication title -
restorative dentistry and endodontics
Language(s) - English
Resource type - Journals
eISSN - 2234-7666
pISSN - 2234-7658
DOI - 10.5395/rde.2019.44.e36
Subject(s) - glider , nickel titanium , fracture (geology) , cyclic stress , materials science , mathematics , metallurgy , composite material , algorithm , shape memory alloy
Objectives The aim of this study was to compare the cyclic fatigue resistance of the WaveOne Gold Glider, ProGlider and One G glide path instruments in artificial double-curvature canals. Materials and Methods This study included 15 WaveOne Gold Glider (size 15/0.08), 15 ProGlider (size 16/0.08), and 15 One G (size 16/0.06) nickel titanium files. The files were used in accordance with the manufacturer's instructions until they were broken in artificial double-curvature canals made of stainless steel. The time to fracture was recorded via a digital stopwatch and the number of rotations until fracture was also calculated. The data were statistically analyzed via the Kruskal-Wallis test. Results The highest average number of rotations until fracture of the files was found for the WaveOne Gold Glider, followed by ProGlider and One G in order. Statistically significant differences were present between all groups of files (p < 0.05). Conclusions In our study, the resistance of the WaveOne Gold Glider nickel-titanium (Ni-Ti) file to cyclic fatigue in S-shaped curved canals was found to be higher than that of the ProGlider and One G Ni-Ti files.

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