Higher Speed and No Glide Path: A New Protocol to Increase the Efficiency of XP Shaper in Curved Canals-An In Vitro Study.

Curved canals XP-endo Shaper glide path micro–computed tomography rotary instrumentation

Journal

Journal of endodontics
ISSN: 1878-3554
Titre abrégé: J Endod
Pays: United States
ID NLM: 7511484

Informations de publication

Date de publication:
Jan 2020
Historique:
received: 27 08 2019
revised: 09 10 2019
accepted: 17 10 2019
pubmed: 26 11 2019
medline: 28 1 2020
entrez: 26 11 2019
Statut: ppublish

Résumé

This in vitro study compared the performance of the XP-endo Shaper (XP; FKG, La Chaux-de-Fonds, Switzerland) in curved canals when used with a higher speed (3000 rpm) without a glide path with the manufacturer's protocol. Twenty extracted mandibular molars with separate mesial curved canals were matched to obtain 2 standardized groups (n = 20). For the XP 1000 group, a glide path up to a size 15 hand file was performed followed by rotary instrumentation with the XP shaper at 1000 rpm, following the manufacturer's recommendations. For the canals in the XP 3000 group, the file was rotated at 3000 rpm after only negotiation the canal with a size 8 hand file (patency file). The operating time and the number of strokes taken to reach the working length (WL) and fit a 30/.04 gutta-percha cone to the WL were recorded. The shaping abilities were evaluated by micro-computed tomographic imaging and file deformation by scanning electron microscopy. Data were analyzed using analysis of variance and chi-square tests at a 5% significance level. The XP 3000 group required less time and strokes to reach the WL (P < .05) and resulted in a higher percentage of adequate cone fit (P < .05). No difference was found between groups regarding the micro-CT parameters, except for the taper, which was larger in the XP 3000 group in the apical and middle thirds (P < .05). No difference was found regarding file deformation between the 2 groups. The suggested protocol for the use of the XP (3000 rpm without a glide path) appears to be more efficient than the manufacturer's recommended protocol to prepare curved canals in vitro.

Identifiants

pubmed: 31761330
pii: S0099-2399(19)30784-8
doi: 10.1016/j.joen.2019.10.014
pii:
doi:

Substances chimiques

Gutta-Percha 9000-32-2

Types de publication

Journal Article

Langues

eng

Pagination

103-109

Informations de copyright

Published by Elsevier Inc.

Auteurs

Mariel Webber (M)

Department of Periodontics and Endodontics, University at Buffalo, Buffalo, New York.

Lucila Piasecki (L)

Department of Periodontics and Endodontics, University at Buffalo, Buffalo, New York. Electronic address: lucilapi@buffalo.edu.

Eduardo Inocente Jussiani (EI)

Applied Nuclear Physics Laboratory, Physics Department, State University of Londrina, Londrina, Paraná, Brazil.

Avacir Casanova Andrello (AC)

Applied Nuclear Physics Laboratory, Physics Department, State University of Londrina, Londrina, Paraná, Brazil.

Paulo José Dos Reis (PJ)

Department of Physics, State University of Central West, Guarapuava, Paraná, Brazil.

Katharina A Azim (KA)

Department of Psychology, University at Buffalo, Buffalo, New York.

Adham A Azim (AA)

Department of Periodontics and Endodontics, University at Buffalo, Buffalo, New York. Electronic address: azim@buffalo.edu.

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