J Vreven
Overview
Explore the profile of J Vreven including associated specialties, affiliations and a list of published articles.
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Articles
44
Citations
214
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Recent Articles
1.
Investigating filler morphology and mechanical properties of new low-shrinkage resin composite types
Leprince J, Palin W, Mullier T, Devaux J, Vreven J, Leloup G
J Oral Rehabil
. 2010 Mar;
37(5):364-76.
PMID: 20202096
Three types of low-shrinkage composites are today commercially available: Ormocers, cationic ring-opening curing systems and highly filled methacrylate-based materials, which cure via free-radical polymerization mechanisms. The aim of this study...
2.
Vermeersch G, Leloup G, Delmee M, Vreven J
J Oral Rehabil
. 2005 Apr;
32(5):368-74.
PMID: 15842247
Agar diffusion testing was used with four different media to evaluate the antibacterial activity of six products (one conventional glass-ionomer cement (GIC), two light-activated glass-ionomers, two polyacid-modified resin composites and...
3.
Sabbagh J, Ryelandt L, Bacherius L, Biebuyck J, Vreven J, Lambrechts P, et al.
J Oral Rehabil
. 2004 Nov;
31(11):1090-101.
PMID: 15525388
The purposes of this study were to determine the weight fraction of filler in thirty-nine resin-based materials including flowable and packable composites, and to examine the morphology of the filler...
4.
Sabbagh J, Vreven J, Leloup G
Dent Mater
. 2001 Dec;
18(1):64-71.
PMID: 11740966
Objectives: The purpose of this study was to assess and compare the elastic moduli of 34 resin-based materials using a dynamic and a static method. The effect of water storage...
5.
Leloup G, DHoore W, Bouter D, Degrange M, Vreven J
J Dent Res
. 2001 Oct;
80(7):1605-14.
PMID: 11597019
Literature data on adherence tests of dentin-bonding systems (DBS) may differ widely, even for the same DBS. The problem of bond testing is that materials are seldom compared with a...
6.
Vermeersch G, Leloup G, Vreven J
J Oral Rehabil
. 2001 Apr;
28(1):26-32.
PMID: 11298906
The short and long-term fluoride release of 16 products (seven conventional glass-ionomers, five light-activated glass-ionomers, two polyacid-modified resin composites and two resin composites) commercialized as fluoride-releasing materials were measured. A...
7.
Raskin A, Setcos J, Vreven J, Wilson N
Clin Oral Investig
. 2000 Sep;
4(3):148-52.
PMID: 11000319
The aims of this prospective randomised clinical study were to clinically evaluate a radiopaque, highly filled, hybrid, light-activated resin-based composite for posterior teeth (Occlusin, ICI Dental, Macclesfield, UK and GC...
8.
Reusens B, DHoore W, Vreven J
Clin Oral Investig
. 2000 May;
3(2):62-9.
PMID: 10803113
An in vivo comparison was made of two different types of restorative resins over a 2-year period: a microfilled resin (-1158262462Silux Plus, 3M-1158262462, USA) and a hybrid minifilled composite resin...
9.
Vermeersch G, Leloup G, Vreven J
Rev Belge Med Dent (1984)
. 1999 Aug;
53(1):278-94.
PMID: 10432827
Clinical evaluation of anticariogenic potential of fluoride releasing materials seems to be the best way to evaluate products effectiveness. This is an expensive, lengthy and difficult process to realise. Yet...
10.
Raskin A, Vreven J, Wilson N
J Dent
. 1999 Jan;
27(1):13-9.
PMID: 9922607
Objective: The 10-year findings of one of the studies which comprised the multicentre clinical evaluation of a light-cured posterior composite restorative are reported, with special emphasis on the reasons and...