Finite element and in vitro study on biomechanical behavior of endodontically treated premolars restored with direct or indirect composite restorations

Objectives of the study were to investigate biomechanical properties of severely compromised premolars restored with composite restorations using finite element analysis (FEA), and in vitro fracture resistance test. A 3-D model of an endodontically treated premolar was created in Solidworks. Differe...

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Veröffentlicht in:Scientific reports 2022-07, Vol.12 (1), p.12671-12671, Article 12671
Hauptverfasser: Maravić, Tatjana, Comba, Allegra, Mazzitelli, Claudia, Bartoletti, Luca, Balla, Irene, di Pietro, Elisabetta, Josić, Uroš, Generali, Luigi, Vasiljević, Darko, Blažić, Larisa, Breschi, Lorenzo, Mazzoni, Annalisa
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Sprache:eng
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Zusammenfassung:Objectives of the study were to investigate biomechanical properties of severely compromised premolars restored with composite restorations using finite element analysis (FEA), and in vitro fracture resistance test. A 3-D model of an endodontically treated premolar was created in Solidworks. Different composite restorations were modelled (direct restoration-DR; endo-crown-EC; post, core, and crown-C) with two different supporting tissues: periodontal ligament/alveolar bone (B), and polymethyl methacrylate (PMMA). Models were two-point axially loaded occlusally (850 N). Von Mises stresses and strains were calculated. The same groups were further tested for static fracture resistance in vitro (n = 5, 6.0 mm-diameter ball indenter, vertical load). Fracture resistance data were statistically analyzed ( p  
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-022-16480-0