dc.contributor.author | Sufyan Garoushi | |
dc.contributor.author | Lippo Lassila | |
dc.contributor.author | Pekka K Vallittu | |
dc.contributor.author | Enas Mangoush | |
dc.date.accessioned | 2022-10-27T11:44:40Z | |
dc.date.available | 2022-10-27T11:44:40Z | |
dc.identifier.uri | https://www.utupub.fi/handle/10024/154930 | |
dc.description.abstract | <h4>Objective</h4><p>The aim was to determine the load-bearing capacity of anterior crowns prepared using two types of single-structure short fibre-reinforced composites (SFRCs). Furthermore, fracture toughness (FT), flexural strength (FS) and flexural modulus (FM) of tested composites were measured.</p><h4>Methods</h4><p>Seven groups of composite crowns were designed for an upper central incisor (n=8/group). Two groups were CAD/CAM fabricated made of Cerasmart 270 and experimental single-structure SFRC blocks. Two groups were 3D-printed made of GC Temp PRINT and Pro3dure GR-17 composites. Two groups were made of conventional light-cured composites (Essentia and Gradia Plus). The last group was a single-structure SFRC made of commercial flowable SFRC (everX Flow). Crown restorations were loaded until fracture. Failure-modes were then visually examined. FT, FS and FM were determined for each tested composite (n=8). The data were analysed using analysis of variance (p=0.05) followed by Tukey's post-hoc test.</p><h4>Results</h4><p>ANOVA revealed that crowns made of experimental SFRC blocks had significantly higher load-bearing capacities (1650 ±230 N) (p⟨0.05) among all the groups tested. Experimental SFRC blocks exhibited the highest FT (2.9 MPa m1/2) and FS (245.8 MPa) values (p⟨0.05) among tested composites.</p><h4>Conclusion</h4><p>CAD/CAM fabricated restorations made of experimental SFRC blocks demonstrated encouraging performance related to their fracture-behaviour.<br /></p> | |
dc.language.iso | en | |
dc.title | Influence of Short Fiber Reinforced Composites on Fracture Resistance of Single-Structure Restorations | |
dc.identifier.url | https://europepmc.org/article/med/32786179 | |
dc.identifier.urn | URN:NBN:fi-fe2021042821009 | |
dc.relation.volume | 28 | |
dc.contributor.organization | fi=Turun Kliininen Biomateriaalikeskus (TCBC)|en=Turku Clinical Biomaterials Centre (TCBC)| | |
dc.contributor.organization | fi=hammaslääketieteen laitos yhteiset|en=Institute of Dentistry| | |
dc.contributor.organization-code | 2607511 | |
dc.contributor.organization-code | 2607500 | |
dc.converis.publication-id | 48562734 | |
dc.converis.url | https://research.utu.fi/converis/portal/Publication/48562734 | |
dc.format.pagerange | 198 | |
dc.format.pagerange | 189 | |
dc.identifier.jour-issn | 0965-7452 | |
dc.okm.affiliatedauthor | Garoushi, Sufyan | |
dc.okm.affiliatedauthor | Vallittu, Pekka | |
dc.okm.affiliatedauthor | Lassila, Lippo | |
dc.okm.discipline | 313 Dentistry | en_GB |
dc.okm.discipline | 313 Hammaslääketieteet | fi_FI |
dc.okm.internationalcopublication | not an international co-publication | |
dc.okm.internationality | International publication | |
dc.okm.type | Journal article | |
dc.publisher.country | Britannia | fi_FI |
dc.publisher.country | United Kingdom | en_GB |
dc.publisher.country-code | GB | |
dc.relation.doi | 10.1922/EJPRD_2075Mangoush10 | |
dc.relation.ispartofjournal | European Journal of Prosthodontics and Restorative Dentistry | |
dc.relation.issue | 4 | |
dc.year.issued | 2020 | |