Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature

To compare the influence of different temperatures and curvature radii on the cyclic fatigue resistance of F6 SkyTaper (F6ST) and One Curve (OC) single file nickel-titanium rotary instruments. <b>Methods: </b>A total of 120 instruments of F6ST and OC #25.06 were evaluated in 5 mm and 3 m...

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Main Authors: Giusy Rita Maria La Rosa, Valeria Shumakova, Gaetano Isola, Francesco Indelicato, Calogero Bugea, Eugenio Pedullà
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/14/9/2256
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spelling doaj-69f15bd0b81940c19ce7ac59c706f4842021-04-28T13:22:40ZengMDPI AGMaterials1996-19442021-04-01142256225610.3390/ma14092256Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of CurvatureGiusy Rita Maria La Rosa0Valeria Shumakova1Gaetano Isola2Francesco Indelicato3Calogero Bugea4Eugenio Pedullà5Department of General Surgery and Medical-Surgical Specialties, University of Catania, Plebiscito 628, 95124 Catania, ItalyDepartment of General Surgery and Medical-Surgical Specialties, University of Catania, Plebiscito 628, 95124 Catania, ItalyDepartment of General Surgery and Medical-Surgical Specialties, University of Catania, Plebiscito 628, 95124 Catania, ItalyDepartment of General Surgery and Medical-Surgical Specialties, University of Catania, Plebiscito 628, 95124 Catania, ItalyPrivate Practice, Vespucci 10, 73044 Lecce, ItalyDepartment of General Surgery and Medical-Surgical Specialties, University of Catania, Plebiscito 628, 95124 Catania, ItalyTo compare the influence of different temperatures and curvature radii on the cyclic fatigue resistance of F6 SkyTaper (F6ST) and One Curve (OC) single file nickel-titanium rotary instruments. <b>Methods: </b>A total of 120 instruments of F6ST and OC #25.06 were evaluated in 5 mm and 3 mm curvature radii at two temperatures (20 °C ± 1 °C and 37 °C ± 1 °C) in 16 mm stainless steel artificial canals associated with a curvature of 60°. The cyclic fatigue of tested files was assessed by employing a customized testing apparatus and expressed as times to fracture (TtF). A statistical analysis was performed with the significance level set at 95%. <b>Results: </b>All instruments decreased their TtF at 37 °C except for OC in the 3 mm radius, in which no significant difference was detected between 20 °C and 37 °C. A 3 mm curvature radius negatively affected TtF of all tested instruments, except for F6ST at 20 °C. F6ST had higher TtF than OC in the 3 mm radius at 20 °C, with no significant difference between them in the other tested conditions. <b>Conclusions: </b>Under the limits of the present in vitro study<b>, </b>body temperature impaired cyclic fatigue resistance of all files, except for OC in the 3 mm curvature radius. All instruments exhibited lower times to fracture in the 3 mm radius, excluding F6ST at 20 °C.https://www.mdpi.com/1996-1944/14/9/2256body temperaturecyclic fatigue resistanceF6 SkyTaperOne Curveradius of curvature
collection DOAJ
language English
format Article
sources DOAJ
author Giusy Rita Maria La Rosa
Valeria Shumakova
Gaetano Isola
Francesco Indelicato
Calogero Bugea
Eugenio Pedullà
spellingShingle Giusy Rita Maria La Rosa
Valeria Shumakova
Gaetano Isola
Francesco Indelicato
Calogero Bugea
Eugenio Pedullà
Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature
Materials
body temperature
cyclic fatigue resistance
F6 SkyTaper
One Curve
radius of curvature
author_facet Giusy Rita Maria La Rosa
Valeria Shumakova
Gaetano Isola
Francesco Indelicato
Calogero Bugea
Eugenio Pedullà
author_sort Giusy Rita Maria La Rosa
title Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature
title_short Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature
title_full Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature
title_fullStr Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature
title_full_unstemmed Evaluation of the Cyclic Fatigue of Two Single Files at Body and Room Temperature with Different Radii of Curvature
title_sort evaluation of the cyclic fatigue of two single files at body and room temperature with different radii of curvature
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-04-01
description To compare the influence of different temperatures and curvature radii on the cyclic fatigue resistance of F6 SkyTaper (F6ST) and One Curve (OC) single file nickel-titanium rotary instruments. <b>Methods: </b>A total of 120 instruments of F6ST and OC #25.06 were evaluated in 5 mm and 3 mm curvature radii at two temperatures (20 °C ± 1 °C and 37 °C ± 1 °C) in 16 mm stainless steel artificial canals associated with a curvature of 60°. The cyclic fatigue of tested files was assessed by employing a customized testing apparatus and expressed as times to fracture (TtF). A statistical analysis was performed with the significance level set at 95%. <b>Results: </b>All instruments decreased their TtF at 37 °C except for OC in the 3 mm radius, in which no significant difference was detected between 20 °C and 37 °C. A 3 mm curvature radius negatively affected TtF of all tested instruments, except for F6ST at 20 °C. F6ST had higher TtF than OC in the 3 mm radius at 20 °C, with no significant difference between them in the other tested conditions. <b>Conclusions: </b>Under the limits of the present in vitro study<b>, </b>body temperature impaired cyclic fatigue resistance of all files, except for OC in the 3 mm curvature radius. All instruments exhibited lower times to fracture in the 3 mm radius, excluding F6ST at 20 °C.
topic body temperature
cyclic fatigue resistance
F6 SkyTaper
One Curve
radius of curvature
url https://www.mdpi.com/1996-1944/14/9/2256
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