Jörg Bossert

Friedrich Schiller University Jena, Jena, Thüringen, Germany 
"Jörg Bossert"
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Kinne RW, Gunnella F, Kunisch E, et al. (2021) Performance of Calcium Phosphate Cements in the Augmentation of Sheep Vertebrae-An Ex Vivo Study. Materials (Basel, Switzerland). 14
Firkowska-Boden I, Adjiski R, Bautista AC, et al. (2020) Biopolymer surface modification of PLGA fibers enhances interfacial shear strength and supports immobilization of rhGDF-5 in fiber-reinforced brushite cement. Journal of the Mechanical Behavior of Biomedical Materials. 115: 104285
Dauben TJ, Dewald C, Firkowska-Boden I, et al. (2020) Quantifying the relationship between surfaces' nano-contact point density and adhesion force of Candida albicans. Colloids and Surfaces. B, Biointerfaces. 194: 111177
Maenz S, Brinkmann O, Hasenbein I, et al. (2020) The old sheep: a convenient and suitable model for senile osteopenia. Journal of Bone and Mineral Metabolism
Gunnella F, Kunisch E, Horbert V, et al. (2019) In Vitro Release of Bioactive Bone Morphogenetic Proteins (GDF5, BB-1, and BMP-2) from a PLGA Fiber-Reinforced, Brushite-Forming Calcium Phosphate Cement. Pharmaceutics. 11
Kunisch E, Gunnella F, Wagner S, et al. (2019) The poly (l-lactid-co-glycolide; PLGA) fiber component of brushite-forming calcium phosphate cement induces the osteogenic differentiation of human adipose tissue-derived stem cells. Biomedical Materials (Bristol, England). 14: 055012
Zhao B, Dewald C, Hennig M, et al. (2018) Microorganisms @ materials surfaces in aircraft: Potential risks for public health? - A systematic review. Travel Medicine and Infectious Disease
Wiegand C, Völpel A, Ewald A, et al. (2018) Critical physiological factors influencing the outcome of antimicrobial testing according to ISO 22196 / JIS Z 2801. Plos One. 13: e0194339
Woldegeorgis A, Kurihara T, Beleites B, et al. (2018) THz Induced Nonlinear Effects in Materials at Intensities above 26 GW/cm 2 Journal of Infrared, Millimeter, and Terahertz Waves. 39: 667-680
Dewald C, Lüdecke C, Firkowska-Boden I, et al. (2017) Gold nanoparticle contact point density controls microbial adhesion on gold surfaces. Colloids and Surfaces. B, Biointerfaces. 163: 201-208
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