Cinematics influence on the cyclic fatigue resistance of rotatory instruments in original system and a replica type.

Authors

  • Vicente Barreto University of San Martin de Porres
  • Kelly Achachao-Almerco Norbert Wiener University.
  • Katty Ríos Villasis Scientific University of the South
  • Juan Villafranca-Vásquez Center for Postgraduate Studies and Research in Health Sciences S.A.C. Cepicisa
  • Hugo Garcia Rivera University of San Martin de Porres

Keywords:

Cyclic fatigue, Nickel-Titanium System, Rotary Movement, Endodontics

Abstract

 

 

 

Objective: To evaluate the resistance to cyclic fatigue of a replica rotary system in comparison with its original system. Method: F2 rotary instruments (n=19 per group) from the original brand ProTaper Gold system (Dentsply Maillefer, Ballaigues, Switzerland) were compared with a Super File III instrument (n=19 per group) from a Denco replica system (Medical Co., Shenzhen, China) regarding cyclic fatigue strength. The instruments were randomly distributed into two groups, according to the file brand. Subsequently, the fatigue cycle was measured; for which, they were activated using the E-mate Pro motor of the Denco brand (Medical Co., Shenzhen, China) at continuous rotation 300 rpm and a torque of 2.5 Ncm. Results: The fracture resistance time was recorded and statistically compared between both groups according to the type of instrument (original system/replica system) using the t-test for independent samples. Statistical analysis showed a significantly longer time to fracture for the replica system with an average of 588.8 ± 178.1 seconds; while, for the original system, the average fracture resistance time was 208.1 ± 41.9 seconds. The instruments of the replica system showed a significantly higher fracture toughness time compared with the instruments from the original system in rotary motion (p<0.05). Conclusion: The instruments of the replica system showed greater resistance to cyclic fatigue than the instruments of the original system.

 

 

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Author Biographies

  • Vicente Barreto, University of San Martin de Porres
    Dental Surgeon
  • Kelly Achachao-Almerco, Norbert Wiener University.
    Dental Surgeon
  • Katty Ríos Villasis, Scientific University of the South
    Dental Surgeon
  • Juan Villafranca-Vásquez, Center for Postgraduate Studies and Research in Health Sciences S.A.C. Cepicisa
    Dental Surgeon
  • Hugo Garcia Rivera, University of San Martin de Porres

    Dental Surgeon
    endodontic specialist

References

Alakabani TF, Faus-Llácer V, Faus-Matoses I, Ruiz-Sánchez C, Zubizarreta-Macho Á, Sauro S, Faus-Matoses V. The Efficacy of Rotary, Reciprocating, and Combined Non-Surgical Endodontic Retreatment Techniques in Removing a Carrier-Based Root Canal Filling Material from Straight Root Canal Systems: A Micro-Computed Tomography Analysis. J Clin Med. 2020;9(6):1989. doi: 10.3390/jcm9061989.

Siddique R, Nivedhitha MS. Effectiveness of rotary and reciprocating systems on microbial reduction: A systematic review. J Conserv Dent. 2019;22(2):114-122. doi: 10.4103/JCD.JCD_523_18.

Ferreira F, Adeodato C, Barbosa I, Aboud L, Scelza P, Zaccaro Scelza M. Movement kinematics and cyclic fatigue of NiTi rotary instruments: a systematic review. Int Endod J. 2017;50(2):143-152. doi: 10.1111/iej.12613.

Gomes MS, Vieira RM, Böttcher DE, Plotino G, Celeste RK, Rossi-Fedele G. Clinical fracture incidence of rotary and reciprocating NiTi files: A systematic review and meta-regression. Aust Endod J. 2021;47(2):372-385. doi: 10.1111/aej.12484.

Pedullà E, La Rosa GRM, Romano G, Leanza G, Rapisarda S, Isola G, Ferlito S, Neelakantan P, Generali L. Influence of kinematics and incidence angles on the cutting efficiency of two single-file nickel-titanium rotary instruments. Aust Endod J. 2021;13. doi: 10.1111/aej.12543.

Duque JA, Bramante CM, Duarte MAH, Alcalde MP, Silva EJNL, Vivan RR. Cyclic Fatigue Resistance of Nickel-Titanium Reciprocating Instruments after Simulated Clinical Use. J Endod. 2020; 18(20): 30607-5.

Silva E, Oliveira de Lima C, Vieira V, Antunes H, Lima Moreira EJ, Versiani M. Cyclic Fatigue and Torsional Resistance of Four Martensite-Based Nickel Titanium Reciprocating Instruments. Eur Endod J. 2020; 5(3):231-5.

Chih-Wen C, Chun-Chieh L, Chun-Pin Li, Chow-Shing S. Cyclic fatigue behavior of nickel-titanium dental rotary files in clinical simulated root canals, Journal of the Formosan Medical Association. 2016; Disponible en: http://dx.doi.org/10.1016/j.jfma.20 16.06.002

Mohsen A, Naghmeh M, Ehsan S. Comparison of Cyclic Fatigue Resistance of Five Nickel Titanium Rotary File Systems with Different Manufacturing Techniques. Journal of Dentistry, Tehran University of Medical Sciences. September 2015; 12 (9) 636- 646. Disponible en: https://www.ncbi.nlm.nih.gov/pmc/ articles/PMC485 4742.

Tabassum S, Zafar K, Umer F. Nickel-Titanium Rotary File Systems: What's New? Eur Endod J. 2019;4(3):111-117. doi: 10.14744/eej.2019.80664.

Zupanc J, Vahdat-Pajouh N, Schäfer E. New thermomechanically treated NiTi alloys - a review. Int Endod J. 2018;51(10):1088-1103. doi: 10.1111/iej.12924.

Gambarini G, Piasecki L, Miccoli G, Gaimari G, Di Giorgio R, Di Nardo D, Azim AA, Testarelli L. Classification and cyclic fatigue evaluation of new kinematics for endodontic instruments. Aust Endod J. 2019;45(2):154-62.

Weyh DJ, Ray JJ. Cyclic fatigue resistance and metallurgic comparison of rotary endodontic file systems. Gen Dent. 2020;68(1):36-9.

Martins JNR, Nogueira Leal Silva EJ, Marques D, Ginjeira A, Braz Fernandes FM, De Deus G, Versiani MA. Influence of Kinematics on the Cyclic Fatigue Resistance of Replicalike and Original Brand Rotary Instruments. J Endod. 2020;46(8):1136-43.

Liang Y, Yue L. Evolution and development: engine-driven endodontic rotary nickel-titanium instruments. Int J Oral Sci. 2022;14(1):12.

Gavini G, Santos MD, Caldeira CL, et al. Nickel-titanium instruments in endodontics: a concise review of the state of the art. Braz Oral Res 2018;32:e67.

Versluis A, Kim HC, Lee W, Kim BM, Lee CJ. Flexural stiffness and stresses in nickel-titanium rotary files for various pitch and cross-sectional geometries. J Endod. 2012;38(10):1399-403.

Tokita D, Ebihara A, Miyara K, Okiji T. Dynamic torsional and cyclic fracture behavior of ProFile rotary instruments at continuous or reciprocating rotation as visualized with high-speed digital video imaging. J Endod 2017;43:1337–42.

Zhou H, Peng B, Zheng Y. An overview of the mechanical properties of nickel–titanium endodontic instruments. Endod Topics 2013;29:42–54.

Published

2022-04-06

Issue

Section

Artículos Originales/ Original articles

How to Cite

Cinematics influence on the cyclic fatigue resistance of rotatory instruments in original system and a replica type. (2022). Revista KIRU, 19(2). https://portalrevistas.aulavirtualusmp.pe/index.php/Rev-Kiru0/article/view/2470

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