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A comparison of the shaping characteristics of two nickel–titanium endodontic hand instruments
Author(s) -
DobóNagy C.,
Serbán T.,
Szabó J.,
Nagy G.,
Madléna M.
Publication year - 2002
Publication title -
international endodontic journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.988
H-Index - 119
eISSN - 1365-2591
pISSN - 0143-2885
DOI - 10.1046/j.1365-2591.2002.00492.x
Subject(s) - nickel titanium , coronal plane , dental instruments , dentistry , orthodontics , superimposition , materials science , mathematics , root canal , computer science , anatomy , composite material , medicine , artificial intelligence , shape memory alloy
Aim The purpose of this study was to compare the shaping characteristics of Ni–Ti K‐files and Ni–Ti S‐files manipulated by hand. Methodology A total of 60 extracted human roots were embedded in resin blocks. The embedded roots were divided into three groups: (i) roots with straight; (ii) apically curved; and (iii) continuously curved canals. Each of the three groups was randomly divided into two subgroups; one subgroup in each group was prepared with Ni–Ti K‐files and the other with Ni–Ti S‐files. The files were used with a step‐back technique and enlarged so that the master apical file was size 30, and the canals were stepped back to size 40. The performance of the files was assessed by the superimposition of projected radiographs taken in bucco‐lingual and mesio‐distal directions before and after the preparation. The results were analysed statistically using analysis of covariance and Duncan’s multiple range test. Results Although canal preparation using Ni–Ti K‐files was quicker, there were no statistically significant differences between file types. The Ni–Ti S‐file removed significantly more material at the most coronal level ( P < 0.05). There were minor differences between instruments at the apical level. Only in the proximal view of apically curved canals prepared with Ni–Ti S‐files was significantly more dentine removed from the outer aspect of the curvature ( P < 0.05). At the middle level (wide danger zone) the Ni–Ti S‐files removed more dentine from the inner aspect of the curvature in those roots with apically curved canals. Conclusions Under the conditions of this study, preparation with Ni–Ti K‐files produced more appropriate shapes in roots with apically curved canals than Ni–Ti S‐files.