Publication: Marginal adaptation and fracture resistance of root-canal treated mandibular molars with intracoronal restorations: effect of thermocycling and mechanical loading
Marginal adaptation and fracture resistance of root-canal treated mandibular molars with intracoronal restorations: effect of thermocycling and mechanical loading
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Hitz, T., Özcan, M., & Göhring, T. N. (2010). Marginal adaptation and fracture resistance of root-canal treated mandibular molars with intracoronal restorations: effect of thermocycling and mechanical loading. Journal of Adhesive Dentistry, 12(4), 279–286. https://doi.org/10.3290/j.jad.a17712
Abstract
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Abstract
PURPOSE: This study evaluated the marginal adaptation, fracture modes, and loads to failure of different mesio-occlusal- distal (MOD) restorations in root canal treated molars in vitro.
MATERIALS AND METHODS: Forty mandibular first molars were randomly assigned to five groups (n = 8): UTR= untreated, RCT-AM= root-canal treated (RCT)+amalgam filling; RCT-COM= RCT+direct composite resin restoration; RCTFRC= RCT+composite resin restoration with two layers of multidirectional woven glass fibers; RCT-CER= RCT+ceramic inlay. All teeth were
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Hitz, T., Özcan, M., & Göhring, T. N. (2010). Marginal adaptation and fracture resistance of root-canal treated mandibular molars with intracoronal restorations: effect of thermocycling and mechanical loading. Journal of Adhesive Dentistry, 12(4), 279–286. https://doi.org/10.3290/j.jad.a17712