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Journal of Biomedical Materials Research. Part A|October 31, 2006
A mathematical model for predicting controlled release of bioactive agents from composite fiber structuresMeital Zilberman, Moran SoferActa Biomaterialia|September 8, 2006
Novel composite fiber structures to provide drug/protein delivery for medical implants and tissue regenerationMeital ZilbermanJournal of Biomedical Materials Research. Part A|August 3, 2006
Microsphere-based bioresorbable structures loaded with proteins for tissue regeneration applicationsMeital Zilberman, Inbal ShragaActa Biomaterialia|September 14, 2011
Novel soy protein wound dressings with controlled antibiotic release: mechanical and physical propertiesZachi Peles, Meital ZilbermanActa Biomaterialia|December 10, 2013
Structure-property effects of novel bioresorbable hybrid structures with controlled release of analgesic drugs for wound healing applicationsMaoz Shemesh, Meital ZilbermanExpert Opinion on Drug Delivery|May 7, 2015
Drug delivery from gelatin-based systemsMaytal Foox, Meital ZilbermanJournal of Biomedical Materials Research. Part B, Applied Biomaterials|September 9, 2008
Drug controlled release from structured bioresorbable films used in medical devices--a mathematical modelMeital Zilberman, Alon MalkaJournal of Biomaterials Applications|May 15, 2007
HRP-loaded bioresorbable microspheres: effect of copolymer composition and molecular weight on microstructure and release profileMeital Zilberman, Orly GrinbergJournal of Biomedical Materials Research. Part A|August 3, 2006
Novel bioresorbabale composite fiber structures loaded with proteins for tissue regeneration applications: microstructure and protein releaseYair Levy, Meital ZilbermanJournal of Biomaterials Applications|November 4, 2015
Microstructure and in vitro cellular response to novel soy protein-based porous structures for tissue regeneration applicationsHilla Olami, Meital ZilbermanPageof 7