Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments

Abstract: This study aimed to assess the cyclic fatigue resistance of Genius and EdgeFile X1 reciprocating instruments compared with WaveOne Gold Primary. Twenty Genius (Ultradent) 25.04, 20 Genius 30.04, 20 EdgeFile X1 (EdgeEndo) and 20 WaveOne Gold Primary (Dentsply Maillefer) instruments were included in this study and tested in a static cyclic fatigue testing device, which has an artificial stainless steel canal with a 60° angle of curvature and a 5-mm radius of curvature. All instruments were operated in reciprocation mode until fracture occurred. The number of cycles to failure (NCF) was calculated and time to fracture (TF) was recorded in seconds using a digital chronometer. The mean and standard deviations of NCF and TF were calculated for each reciprocating system and the data were subjected to Kruskal-Wallis one-way analysis of variance and to Dunn's test (p < .05) using SigmaPlot software (Systat software, CA, USA). The fractured surfaces of five instruments from each brand were randomly examined and microphotographed by a low-vacuum environmental scanning electron microscopy – SEM (Tabletop Microscope TM3030, Hitachi, Japan) to confirm the cyclic fatigue fracture. EdgeFile exhibited the highest cyclic fatigue resistance, followed by both Genius files (p < .05). Within the limitations of this in vitro study, EdgeFile X1 instruments had significantly higher cyclic fatigue resistance than did Genius and WaveOne Gold Primary instruments. The cyclic fatigue resistance of both Genius files was higher than that of WaveOne Gold Primary.

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Main Authors: Bueno,Carlos Roberto Emerenciano, Cury,Marina Tolomei Sandoval, Vasques,Ana Maria Veiga, Sivieri-Araújo,Gustavo, Jacinto,Rogério Castilho, Gomes-Filho,João Eduardo, Cintra,Luciano Tavares Angelo, Dezan-Júnior,Eloi
Format: Digital revista
Language:English
Published: Sociedade Brasileira de Pesquisa Odontológica - SBPqO 2019
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1806-83242019000100219
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spelling oai:scielo:S1806-832420190001002192019-04-09Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instrumentsBueno,Carlos Roberto EmerencianoCury,Marina Tolomei SandovalVasques,Ana Maria VeigaSivieri-Araújo,GustavoJacinto,Rogério CastilhoGomes-Filho,João EduardoCintra,Luciano Tavares AngeloDezan-Júnior,Eloi Dental Instruments Endodontics Root Canal Preparation Abstract: This study aimed to assess the cyclic fatigue resistance of Genius and EdgeFile X1 reciprocating instruments compared with WaveOne Gold Primary. Twenty Genius (Ultradent) 25.04, 20 Genius 30.04, 20 EdgeFile X1 (EdgeEndo) and 20 WaveOne Gold Primary (Dentsply Maillefer) instruments were included in this study and tested in a static cyclic fatigue testing device, which has an artificial stainless steel canal with a 60° angle of curvature and a 5-mm radius of curvature. All instruments were operated in reciprocation mode until fracture occurred. The number of cycles to failure (NCF) was calculated and time to fracture (TF) was recorded in seconds using a digital chronometer. The mean and standard deviations of NCF and TF were calculated for each reciprocating system and the data were subjected to Kruskal-Wallis one-way analysis of variance and to Dunn's test (p < .05) using SigmaPlot software (Systat software, CA, USA). The fractured surfaces of five instruments from each brand were randomly examined and microphotographed by a low-vacuum environmental scanning electron microscopy – SEM (Tabletop Microscope TM3030, Hitachi, Japan) to confirm the cyclic fatigue fracture. EdgeFile exhibited the highest cyclic fatigue resistance, followed by both Genius files (p < .05). Within the limitations of this in vitro study, EdgeFile X1 instruments had significantly higher cyclic fatigue resistance than did Genius and WaveOne Gold Primary instruments. The cyclic fatigue resistance of both Genius files was higher than that of WaveOne Gold Primary.info:eu-repo/semantics/openAccessSociedade Brasileira de Pesquisa Odontológica - SBPqOBrazilian Oral Research v.33 20192019-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1806-83242019000100219en10.1590/1807-3107bor-2019.vol33.0028
institution SCIELO
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country Brasil
countrycode BR
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access En linea
databasecode rev-scielo-br
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region America del Sur
libraryname SciELO
language English
format Digital
author Bueno,Carlos Roberto Emerenciano
Cury,Marina Tolomei Sandoval
Vasques,Ana Maria Veiga
Sivieri-Araújo,Gustavo
Jacinto,Rogério Castilho
Gomes-Filho,João Eduardo
Cintra,Luciano Tavares Angelo
Dezan-Júnior,Eloi
spellingShingle Bueno,Carlos Roberto Emerenciano
Cury,Marina Tolomei Sandoval
Vasques,Ana Maria Veiga
Sivieri-Araújo,Gustavo
Jacinto,Rogério Castilho
Gomes-Filho,João Eduardo
Cintra,Luciano Tavares Angelo
Dezan-Júnior,Eloi
Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
author_facet Bueno,Carlos Roberto Emerenciano
Cury,Marina Tolomei Sandoval
Vasques,Ana Maria Veiga
Sivieri-Araújo,Gustavo
Jacinto,Rogério Castilho
Gomes-Filho,João Eduardo
Cintra,Luciano Tavares Angelo
Dezan-Júnior,Eloi
author_sort Bueno,Carlos Roberto Emerenciano
title Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
title_short Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
title_full Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
title_fullStr Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
title_full_unstemmed Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
title_sort cyclic fatigue resistance of novel genius and edgefile nickel-titanium reciprocating instruments
description Abstract: This study aimed to assess the cyclic fatigue resistance of Genius and EdgeFile X1 reciprocating instruments compared with WaveOne Gold Primary. Twenty Genius (Ultradent) 25.04, 20 Genius 30.04, 20 EdgeFile X1 (EdgeEndo) and 20 WaveOne Gold Primary (Dentsply Maillefer) instruments were included in this study and tested in a static cyclic fatigue testing device, which has an artificial stainless steel canal with a 60° angle of curvature and a 5-mm radius of curvature. All instruments were operated in reciprocation mode until fracture occurred. The number of cycles to failure (NCF) was calculated and time to fracture (TF) was recorded in seconds using a digital chronometer. The mean and standard deviations of NCF and TF were calculated for each reciprocating system and the data were subjected to Kruskal-Wallis one-way analysis of variance and to Dunn's test (p < .05) using SigmaPlot software (Systat software, CA, USA). The fractured surfaces of five instruments from each brand were randomly examined and microphotographed by a low-vacuum environmental scanning electron microscopy – SEM (Tabletop Microscope TM3030, Hitachi, Japan) to confirm the cyclic fatigue fracture. EdgeFile exhibited the highest cyclic fatigue resistance, followed by both Genius files (p < .05). Within the limitations of this in vitro study, EdgeFile X1 instruments had significantly higher cyclic fatigue resistance than did Genius and WaveOne Gold Primary instruments. The cyclic fatigue resistance of both Genius files was higher than that of WaveOne Gold Primary.
publisher Sociedade Brasileira de Pesquisa Odontológica - SBPqO
publishDate 2019
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1806-83242019000100219
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