Cyclic fatigue resistance of novel Genius and Edgefile nickel-titanium reciprocating instruments
Author:
Affiliation:
1. Universidade Estadual Paulista- UNESP, Brazil
Publisher
FapUNIFESP (SciELO)
Subject
Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics
Link
http://www.scielo.br/pdf/bor/v33/1807-3107-bor-33-e028.pdf
Reference48 articles.
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2. Current challenges and concepts in the preparation of root canal systems: a review;Peters OA;J Endod,2004
3. Comparison of canal transportation and centering ability of twisted files, Pathfile-ProTaper system, and stainless steel hand K-files by using computed tomography;Gergi R;J Endod,2010
4. Comparison of canal transportation and changes in canal curvature of two nickel-titanium rotary instruments;El Batouty KM;J Endod,2011
5. Failure mechanism of ProTaper Ni-Ti rotary instruments during clinical use: fractographic analysis;Spanaki-Voreadi AP;Int Endod J,2006
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1. Effect of Taper and Pitch on Nickle-Titanium File with Variable Cross Section to Its Cyclic Fatigue (In Silico Study);J DENT INDONES;2024
2. Evaluation of Cyclic Fatigue Resistance of Novel Replica‐Like Instruments in Static Test Model;Applied Bionics and Biomechanics;2024-01
3. Apically extruded debris of different file systems used with various kinematic movements during retreatment: An in vitro study;Australian Endodontic Journal;2022-09-20
4. Multimethod Assessment of the Cyclic Fatigue Strength of ProGlider, Edge Glide Path and R-Pilot Endodontic Instruments;Dentistry Journal;2022-02-17
5. Shaping and Centering Ability, Cyclic Fatigue Resistance and Fractographic Analysis of Three Thermally Treated NiTi Endodontic Instrument Systems;Materials;2020-12-21
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