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Inhibition of Candida albicans biofilm formation by antimycotics released from modified polydimethyl siloxane
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- Journal Article
- A1
- open access
Candida albicans biofilm formation on peptide functionalized polydimethylsiloxane
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Biocompatibilisation of poly(dimethylsiloxane)-basedbiomaterials by surface modification.
(2009) -
Poly(2-aminoethyl-methacrylate) grafted poly-E-caprolactone surfaces for the development of cell-interactive biomaterials
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Surface biocompatibilisation of silicones for medical applications
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Adhesion enhancement by a dielectric barrier discharge of PDMS used for flexible and stretchable electronics
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Surface modification of silicone bqsed larynx prosthesis to reduce C.Albicans adhesion (Poster by N.De Smet)
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Surface modifications of PDMS to make it more biocompatible
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Surface modification of a silicone based larynx voice prothesis
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Novel biocompatible materials
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Adhesion enhancement by a dielectric barrier discharge of PDMS used for flexible and stretchable electronics
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Modifications of the silicone materials by photoinitiator. Poster P45 by M. Rymarczyk-M
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Reduction of C.Albicans Biofilm formation by surface modification of PDMS. Poster P17 by N. De Smet
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Surface modified silicon based larynx prosthesis. (Poster by N. De Smet)
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Oppervlak-gemodificeerde stemprothese (lezing dr. N. De Smet)