Literature DB >> 22372913

Influence of crown ferrule heights and dowel material selection on the mechanical behavior of root-filled teeth: a finite element analysis.

Mauricio U Watanabe1, Rodolfo Bruniera Anchieta, Eduardo Passos Rocha, Sidney Kina, Erika Oliveira de Almeida, Amilcar Chagas Freitas, Roberta Tarkany Basting.   

Abstract

PURPOSE: This study used the 3D finite element (FE) method to evaluate the mechanical behavior of a maxillary central incisor with three types of dowels with variable heights of the remaining crown structure, namely 0, 1, and 2 mm.
MATERIALS AND METHODS: Based on computed microtomography, nine models of a maxillary central incisor restored with complete ceramic crowns were obtained, with three ferrule heights (0, 1, and 2 mm) and three types of dowels (glass fiber = GFD; nickel-chromium = NiCr; gold alloy = Au), as follows: GFD0--restored with GFD with absence (0 mm) of ferrule; GFD1--similar, with 1 mm ferrule; GFD2--glass fiber with 2 mm ferrule; NiCr0--restored with NiCr alloy dowel with absence (0 mm) of ferrule; NiCr1--similar, with 1 mm ferrule; NiCr2--similar, with 2 mm ferrule; Au0--restored with Au alloy dowel with absence (0 mm) of ferrule; Au1--similar, with 1 mm ferrule; Au2--similar, with 2 mm ferrule. A 180 N distributed load was applied to the lingual aspect of the tooth, at 45° to the tooth long axis. The surface of the periodontal ligament was fixed in the three axes (x = y = z = 0). The maximum principal stress (σ(max)), minimum principal stress (σ(min)), equivalent von Mises (σ(vM)) stress, and shear stress (σ(shear)) were calculated for the remaining crown dentin, root dentin, and dowels using the FE software.
RESULTS: The σ(max) (MPa) in the crown dentin were: GFD0 = 117; NiCr0 = 30; Au0 = 64; GFD1 = 113; NiCr1 = 102; Au1 = 84; GFD2 = 102; NiCr2 = 260; Au2 = 266. The σ(max) (MPa) in the root dentin were: GFD0 = 159; NiCr0 = 151; Au0 = 158; GFD1 = 92; NiCr1 = 60; Au1 = 67; GFD2 = 97; NiCr2 = 87; Au2 = 109.
CONCLUSION: The maximum stress was found for the NiCr dowel, followed by the Au dowel and GFD; teeth without ferrule are more susceptible to the occurrence of fractures in the apical root third.
© 2012 by the American College of Prosthodontists.

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Year:  2012        PMID: 22372913     DOI: 10.1111/j.1532-849X.2011.00832.x

Source DB:  PubMed          Journal:  J Prosthodont        ISSN: 1059-941X            Impact factor:   2.752


  4 in total

1.  Influence of Post Angulation between Coronal and Radicular Segment on the Fracture Resistance of Endodontically Treated Teeth.

Authors:  Satheesh B Haralur; Anas Abdullah Lahig; Yahya Ahmed Al Hudiry; Abdullah Hassan Al-Shehri; Ahmed Abdullah Al-Malwi
Journal:  J Clin Diagn Res       Date:  2017-08-01

2.  Stress distribution on dentin-cement-post interface varying root canal and glass fiber post diameters. A three-dimensional finite element analysis based on micro-CT data.

Authors:  Priscilla Cardoso Lazari; Rodrigo Caldeira Nunes de Oliveira; Rodolfo Bruniera Anchieta; Erika Oliveira de Almeida; Amilcar Chagas Freitas Junior; Sidney Kina; Eduardo Passos Rocha
Journal:  J Appl Oral Sci       Date:  2013 Nov-Dec       Impact factor: 2.698

3.  An in vitro study evaluating the effect of ferrule design on the fracture resistance of endodontically treated mandibular premolars after simulated crown lengthening or forced eruption methods.

Authors:  Qingfei Meng; Qian Ma; Tianda Wang; Yaming Chen
Journal:  BMC Oral Health       Date:  2018-05-10       Impact factor: 2.757

4.  Influence of remaining coronal thickness and height on biomechanical behavior of endodontically treated teeth: survival rates, load to fracture and finite element analysis.

Authors:  Gislene Corrêa; Lucas P Brondani; Vinícius F Wandscher; Gabriel K R Pereira; Luiz F Valandro; César D Bergoli
Journal:  J Appl Oral Sci       Date:  2018-05-07       Impact factor: 2.698

  4 in total

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