Literature DB >> 22151797

Comparison of the fracture resistance of simulated immature permanent teeth using various canal filling materials and fiber posts.

Jale Tanalp1, Idil Dikbas, Ozlem Malkondu, Handan Ersev, Tufan Güngör, Gündüz Bayırlı.   

Abstract

BACKGROUND: The purpose of this study was to compare the fracture resistances of immature teeth treated with MTA along with root canal obturation methods using AH Plus, MetaSEAL, MTA Fillapex sealers + lateral compaction technique, and Unicore quartz fiber posts.
MATERIALS AND METHODS: Fifty single-rooted maxillary anterior teeth were divided into five groups. The crowns were dissected and root canals were enlarged. #6 Peeso reamers were allowed to protrude 1 mm. beyond the apex to simulate immature teeth. The apical 4-5 mm of each tooth was filled using Angelus white MTA. The remaining portions of canals were obturated as follows: Group 1: No backfilling (control), Group 2: AH Plus + gutta-percha, lateral compaction, Group 3: MetaSEAL + gutta-percha, lateral compaction, Group 4: MTA Fillapex + gutta-percha, lateral compaction, Group 5: UniCore Fiber posts luted using PermaFlo DC. The specimens were embedded into self-curing acrylic poured into identical cylinders which were mounted on a jig providing a 45° angle. A compressive load increasing at 1 mm min(-1) was applied and the maximum load at which fracture occurred was recorded. Statistical analysis was performed using Kruskal-Wallis and Dunn's multiple tests.
RESULTS: The highest fracture resistance was obtained with Group 5 (Fiber posts) whereas Group 4 (MTA Fillapex) yielded the lowest values. The mean fracture resistance value of Group 2 (AH Plus) was significantly higher than Group 4 (MTA Fillapex) (P = 0.001). The mean fracture value of Group 5 (Fiber posts) was significantly higher than Group 2 (AH Plus), Group 3 (MetaSEAL), and Group 4 (MTA Fillapex) (P = 0.02, 0.004, and 0.0001, respectively).
CONCLUSION: Within the limitations of this study, UniCore quartz fiber posts provided the highest resistance. This methodology may specifically be advantageous for teeth with arrest of development at early stages, as these teeth are more susceptible to fracture owing to their excessively weak dentinal walls.
© 2011 John Wiley & Sons A/S.

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Year:  2011        PMID: 22151797     DOI: 10.1111/j.1600-9657.2011.01098.x

Source DB:  PubMed          Journal:  Dent Traumatol        ISSN: 1600-4469            Impact factor:   3.333


  9 in total

1.  Fatigue failure load of immature anterior teeth: influence of different fiber post-core systems.

Authors:  Márk Fráter; Tekla Sáry; Viktória Néma; Gábor Braunitzer; Pekka Vallittu; Lippo Lassila; Sufyan Garoushi
Journal:  Odontology       Date:  2020-05-02       Impact factor: 2.634

2.  Fracture Resistance of Simulated Immature Teeth Obturated with Gutta-Percha or Resilon and Reinforced by Composite or Post.

Authors:  Behnam Bolhari; Elham Mojazi Amiri; Hamidreza Kermanshah; Sholeh Ghabraei; Azad Jamei
Journal:  J Dent (Tehran)       Date:  2015-02

3.  Fracture resistance of cementum-extended composite fillings in severely damaged deciduous incisors: An in vitro study.

Authors:  Bahman Seraj; Sara Ehsani; Shirin Taravati; Sara Ghadimi; Mostafa Fatemi; Sahar Safa
Journal:  Eur J Dent       Date:  2014-10

4.  Reinforcing Effects of Calcium Silicate-based Cement and Dual Cure Composite Resin in Simulated Immature Teeth with an Open Apex: An in vitro Study.

Authors:  Murtuza S Zhabuawala; Roopa R Nadig; Veena S Pai; Yashwanth Gowda; Ranjini M Aswathanarayana
Journal:  Int J Clin Pediatr Dent       Date:  2017-02-27

5.  Effect of Incisal Porcelain Veneering Thickness on the Fracture Resistance of CAD/CAM Zirconia All-Ceramic Anterior Crowns.

Authors:  Noha Badran; Sanaa Abdel Kader; Fayza Alabbassy
Journal:  Int J Dent       Date:  2019-08-26

6.  Fracture resistance of roots with simulated internal resorption defects and obturated using different hybrid techniques.

Authors:  Özgür İlke Ulusoy; Yelda Nayır Paltun
Journal:  J Dent Sci       Date:  2016-11-10       Impact factor: 2.080

7.  Fracture resistance of immature teeth filled with mineral trioxide aggregate, bioaggregate, and biodentine.

Authors:  Emre Bayram; Huda Melike Bayram
Journal:  Eur J Dent       Date:  2016 Apr-Jun

8.  Long-Term Fracture Resistance of Simulated Immature Teeth Filled with Various Calcium Silicate-Based Materials.

Authors:  Yeliz Guven; Elif Bahar Tuna; M Emir Dincol; Emre Ozel; Bulent Yilmaz; Oya Aktoren
Journal:  Biomed Res Int       Date:  2016-06-13       Impact factor: 3.411

9.  Effect of obturating materials on fracture resistance of simulated immature teeth.

Authors:  Karri Girish; Jyothi Mandava; R Ravi Chandra; K Ravikumar; Anupreeta Anwarullah; Mounika Athaluri
Journal:  J Conserv Dent       Date:  2017 Mar-Apr
  9 in total

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