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7 articles scientifiques publiés — formation continue solide
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GIP MAISON DEP PERSONNES HANDICAPEES
PYRAMIDES DU CONSEIL DEPARTEMENTAL 7 RTE DE GUERRY, 18000 BOURGES
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Source : Google News (recherche par nom complet — homonymes possibles, vérifier le contenu).
📰 Le Berry Républicain · 14/10/2021
<a href="https://news.google.com/rss/articles/CBMiugFBVV95cUxPZGpBQ2RUYnhVNEU3cmY0Q1l4N3lYdUpScENIXzFQTllNYlRxMXNMa2VralRsTTdodnBtVUsxb0k0QkVfUFZFMnBVZUt6TW5HcHZLSE5ubU01NnphVlJ0Y2pBSTFLSU95d2t0OFdBamFreGc5Z0dCOWVVR1VfOUNfMFhITTdvYmdtal9mZ3lKc09ZOHJLZDlzVElHUE5pb3dSY3BuVFBTV1AwSTNOVTdKcXo2OTYyaF9UYm
Materials (Basel, Switzerland) · 2020
Resin composite and glass ionomer cement (GIC) are the most commonly used dental materials to perform direct restorations. Both have specific characteristics that explain their popularity and their limits. More than 20 years ago, the first attempt (followed by others) to combine the advantages of these two families was performed with compomers, but it was not very successful. Recently, new formulations (also called ‘smart materials’) with claimed ion release properties have been proposed under different family names, but there are few studies on them and explanations of their chemistries. This comprehensive review aims to gather the compositions; the setting reactions; the mechanical, self-adhesive, and potential bulk-fill properties; and the ion release abilities of the large existing families of fluoride-releasing restorative materials and the new restorative materials to precisely describe their characteristics, their eventual bioactivities, and classify them for an improved understanding of these materials. Based on this work, the whole GIC family, including resin-modified and highly viscous formulations, was found to be bioactive. Cention N (Ivoclar Vivadent, AG, Schaan, Lietschentein) is the first commercially available bioactive resin composite.
Materials (Basel, Switzerland) · 2022
The aim of this systematic review was to determine the optimal printing parameters for the producing of fused deposition modeling (FDM) 3D-printed polyetheretherketone (PEEK) elements with mechanical properties suitable for dental restorations. Indeed, the mechanical properties are a critical prerequisite for the study of other parameters, such as physical, aesthetic and biological properties. An exhaustive electronic search was carried out in the PubMed, Embase and Web of knowledge databases to gather all the studies evaluating the influence of the printing parameters on the obtained mechanical properties of FDM 3D-printed PEEK elements were selected. Initially, the search resulted in 614 eligible papers. Independent screenings of the abstracts were performed by two authors to identify the articles related to the question. Twenty-nine studies were selected, of which eleven were further excluded after reading of the full text, and finally, eighteen articles were included in this review. The studies were difficult to compare due to the variability of the printing parameters and the types of PEEK. However, it seems interesting to use a high infill rate, a high chamber temperature close to that of the printing temperature and a heat post-treatment to obtain 3D PEEK elements presenting properties adapted to use as dental restorations. The analysis of the available literature suggested that the properties of PEEK could make it an interesting material in dental restorations to be performed with FDM additive manufacturing.
Source PubMed · Recherche par auteur (homonymes possibles, vérifier l'affiliation).
Materials (Basel, Switzerland) · 2022 · Journal Article
Moby V, Dupagne L, Fouquet V, Attal JP, et al.
Materials (Basel, Switzerland) · 2020 · Journal Article
Francois P, Fouquet V, Attal JP, Dursun E
BMC oral health · 2024 · Journal Article
Pédemay C, François P, Fouquet V, Abdel-Gawad S, et al.
Materials (Basel, Switzerland) · 2022 · Journal Article
Fouquet V, Lachard F, Abdel-Gawad S, Dursun E, et al.
Journal of registry management · 2016 · Journal Article
Delcher C, Puttkammer N, Arnoux R, Francois K, et al.
PloS one · 2016 · Journal Article
Kanaan SB, Onat OE, Balandraud N, Martin GV, et al.
Materials (Basel, Switzerland) · 2022 · Journal Article
Moby V, Dupagne L, Fouquet V, Attal JP, et al.
PloS one · 2016 · Journal Article
Azzouz DF, Martin GV, Arnoux F, Balandraud N, et al.