The impact of using a pneumatic contra-angle device on the lifespan of M-Wire- and Blue-treated instruments

Objectives To evaluate the cyclic fatigue resistance of Reciproc M-Wire R25 (VDW, Munich, Germany) and Reciproc R25 Blue instruments (VDW) driven by Direct® (VDW) contra-angle connected to an ordinary an air-driven motor or an electric motor and compare the results with those obtained by the Recipro...

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Veröffentlicht in:Clinical oral investigations 2019-02, Vol.23 (2), p.617-621
Hauptverfasser: Silva, Emmanuel João Nogueira Leal, Vieira, Victor Talarico Leal, Gabina, Tanize Theresinha Gonçalves, Antunes, Henrique dos Santos, Lopes, Hélio Pereira, De-Deus, Gustavo
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Sprache:eng
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Zusammenfassung:Objectives To evaluate the cyclic fatigue resistance of Reciproc M-Wire R25 (VDW, Munich, Germany) and Reciproc R25 Blue instruments (VDW) driven by Direct® (VDW) contra-angle connected to an ordinary an air-driven motor or an electric motor and compare the results with those obtained by the Reciproc M-Wire R25 or Reciproc Blue R25 instruments driven by an electric torque-controlled motor using “RECIPROC ALL” preset program. Materials and methods Thirty Reciproc M-Wire R25 (25/0.08v) and 30 Reciproc Blue R25 (25/0.08v) instruments were used. Cyclic fatigue resistance was tested measuring the time to fracture and the number of cycles to fracture in an artificial stainless-steel canal with a 60° angle and a 5-mm radius of curvature. The Reciproc M-Wire and Reciproc Blue instruments were activated with a 6:1 reduction handpiece powered by a torque-controlled motor using “RECIPROC ALL” preset program, with Reciproc Direct® contra-angle powered by an ordinary air-driven motor or with Direct® contra-angle powered by an electric motor ( n  = 10). The fracture surface of all fragments was examined with a scanning electron microscope. The results were statistically analyzed using Student’s t test and one-way ANOVA at a significance level of P  
ISSN:1432-6981
1436-3771
DOI:10.1007/s00784-018-2480-4