1. Electrostatic flocking of chitosan fibres leads to highly porous, elastic and fully biodegradable anisotropic scaffolds. (15th October 2016) Authors: Gossla, Elke; Tonndorf, Robert; Bernhardt, Anne; Kirsten, Martin; Hund, Rolf-Dieter; Aibibu, Dilibar; Cherif, Chokri; Gelinsky, Michael Journal: Acta biomaterialia Issue: Volume 44(2016) Page Start: 267 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
2. Electrostatic flocking of chitosan fibres leads to highly porous, elastic and fully biodegradable anisotropic scaffolds. (15th October 2016) Authors: Gossla, Elke; Tonndorf, Robert; Bernhardt, Anne; Kirsten, Martin; Hund, Rolf-Dieter; Aibibu, Dilibar; Cherif, Chokri; Gelinsky, Michael Journal: Acta biomaterialia Issue: Volume 44(2016) Page Start: 267 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗