School of Geology

Latest additions:
2010-09-03
12:35
Sol-Gel Hydroxyapatite-CaO Composites: Fabrication and Bioactivity Studies / Hatzistavrou, E. ; Chatzistavrou, Xanthippi ; Papadopoulou, Lambrini ; Kantiranis, Nikolaos ; et al [IKEEART-2010-422]
In this study the fabrication and characterization of a novel sol-gel derived HAp-CaO composite material is investigated. [...]
Published in: Key Engineering Materials (ISSN:10139826), vol.396 - 398 [2009] p.99-102, DOI:10.4028/www.scientific.net/KEM.396-398.99(External Link)
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2010-09-01
12:40
The effects of procedural variables on the maximum capture efficiency of CO2 using a carbonation/calcination cycle of carbonate rocks / Chrissafis, K. ; Dagounaki, C. ; Paraskevopoulos, K.M. [IKEEART-2010-373]
The effect of procedural variables–mass and heating and cooling rate–on the maximum capture efficiency of CO2 is studied, using a carbonation/calcination cycle, for a series of carbonation rocks with different stoichiometries of dolomite and calcite. [...]
Published in: Thermochimica Acta (ISSN:00406031), vol.428 no.1-2 [2004] p.193-198 , DOI:10.1016/j.tca.2004.10.010(External Link)
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2010-09-01
09:50
Thermal characterization of carbonate rocks, Kozani area, North-western Macedonia, Greece / Dagounaki, C. ; Chrissafis, K. ; Kassoli-Fournaraki, A. ; Tsirambides, A. ; et al [IKEEART-2010-370]
Representative carbonate rock samples collected from the broader area of Kozani (NW Macedonia, Greece) are examined. [...]
Published in: Journal of Thermal Analysis and Calorimetry (ISSN:13886150), vol.78 no.1 [2004] p.295-306, DOI:10.1023/B:JTAN.0000042176.86085.44(External Link)
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2010-08-27
12:16
Studying Dental Ceramic-Bioactive Glass Composites / Kontonasaki, E. ; Kantiranis, Nikolaos ; Chatzistavrou, Xanthippi ; Papadopoulou, Lambrini ; et al [IKEEART-2010-338]
Dental ceramic-bioactive glass composites support the attachment and proliferation of human periodontal ligament cells, while their immersion in a simulated body fluid (SBF) results in the precipitation of biological hydroxyapatite further supporting cell proliferation [1]. [...]
Published in: Key Engineering Materials (ISSN:10139826), vol.361 - 363 [2007] p.881-884, DOI:10.4028/www.scientific.net/KEM.361-363.881(External Link)
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2010-08-27
12:00
Microstructural characterization and comparative evaluation of physical, mechanical and biological properties of three ceramics for metal–ceramic restorations / Kontonasaki, Eleana ; Kantiranis, Nikolaos ; Papadopoulou, Lambrini ; Chatzistavrou, Xanthippi ; et al [IKEEART-2010-337]
Published in: Dental Materials (ISSN:01095641), vol.24 no.10 [2008] p.1362-1373 , DOI:10.1016/j.dental.2008.03.002(External Link)
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2010-08-27
11:27
Expression of Bioactivity and Biocompatibility Testing of Bioactive Glass Modified Zinc Phosphate Luting Cement / Kontonasaki, E. ; Papazisis, K. ; Papadopoulou, Lambrini ; Zorba, T. ; et al [IKEEART-2010-336]
The bioactivity and biocompatibility of a zinc phosphate luting cement (HARVARD, Richter & Hoffmann, Dental-GmbH, Berlin) which was modified by Bioglass® (PerioGlas® Synthetic Bone Graft Particulate, US Biomaterials), was evaluated in vitro with human lung fibroblasts (MRC-5), baby hamster kidney fibroblasts (BHK) and rat pulp cells (RPC) by XTT and BrdU assays. [...]
Published in: Key Engineering Materials (ISSN:10139826), vol.309 - 311 [2006] p.813-816, DOI:10.4028/www.scientific.net/KEM.309-311.813(External Link)
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2010-08-27
11:17
Attachment and Proliferation of Human Periodontal Ligament Fibroblasts on Fibronectin-Coated Bioactive Glass Modified Ceramics / Kontonasaki, E. ; Sivropoulou, A. ; Papadopoulou, Lambrini ; Garefis, P. ; et al [IKEEART-2010-335]
The effect of fibronectin (FN) on human periodontal ligament fibroblasts (PDLF) attachment and proliferation on Bioglass® (PerioGlas® Synthetic Bone Graft Particulate, US Biomaterials) modified dental ceramics, was investigated in vitro. [...]
Published in: Key Engineering Materials (ISSN:10139826), vol.309 - 311 [2006] p.727-730, DOI:10.4028/www.scientific.net/KEM.309-311.727(External Link)
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2010-08-27
11:00
Effect of Bioactive Glass/Cement Weight Ratio on Bioactivity and Biocompatibility of a Bioactive Glass Modified Glass Ionomer Cement / Kontonasaki, E. ; Papadopoulou, Lambrini ; Zorba, T. ; Siarampi, E. ; et al [IKEEART-2010-334]
The bioactivity of a glass ionomer luting cement (Ketac®-cem, ESPE, Germany), which was modified by Bioglass® (PerioGlas® Synthetic Bone Graft Particulate, US Biomaterials) in different bioglass/powder weight ratios, and the biocompatibility of the produced mixtures were evaluated in this study using different cell lines. [...]
Published in: Key Engineering Materials (ISSN:10139826), vol.309-311 [2006] p.877-880, DOI:10.4028/www.scientific.net/KEM.309-311.877(External Link)
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2010-08-27
10:33
Influence of particle size on the crystallization process and the bioactive behavior of a bioactive glass system / Chatzistavrou, X. ; Zorba, T. ; Chrissafis, K. ; Kaimakamis, G. ; et al [IKEEART-2010-332]
Bioactive glasses have attracted considerable interest in recent years, due to their technological application, especially in biomaterials research [...]
Published in: Journal of Thermal Analysis and Calorimetry (ISSN:13886150), vol.85 no.2 [2006] p.253-259, DOI:10.1007/s10973-005-7165-y(External Link)
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2010-08-27
09:57
A bioactive glass/dental porcelain system by the sol gel route: Fabrication and Characterization / Goudouri, O.M. ; Kontonasaki, E. ; Kantiranis, Nikolaos ; Chatzistavrou, Xanthippi ; et al [IKEEART-2010-330]
Melt derived bioactive glass- porcelain system is reported to be bioactive but with a slow rate of bioactivity. [...]
Published in: Key Engineering Materials (ISSN:10139826), vol.396 - 398 [2009] p.95-98, DOI:10.4028/www.scientific.net/KEM.396-398.95(External Link)
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