Data: Electrospun polyester-urethane scaffold preserves mechanical properties and exhibits strain stiffening during in situ tissue ingrowth and degradation
posted on 2019-09-29, 13:47authored byRodaina Omar, Josepha Koehne, Hugo Krynauw, Georges Limbert, Neil Hamer Davies, Deon Bezuidenhout, Thomas FranzThomas Franz
The provided material represents the data for fibre diameter, fibre
alignment, tissue ingrowth and mechanical properties of an
tissue-engineering electrospun polymeric scaffold related to the article
Krynauw H, Omar R, Koehne J, Limbert G, Davies NH, Bezuidenhout D, Franz T, Electrospun polyester-urethane scaffold preserves mechanical properties and exhibits strain stiffening during in situ tissue ingrowth and degradation. bioRxiv, 2019: 783522
Funding
National Research Foundation, South Africa, Grant: SUR2008051000002
Inter-university Cape Heart Research Unit, South African Medical Research Council
Jahresstipendium S/08/10, Deutsche Herzstiftung
Matching Dissertation Grant, International Society of Biomechanics
History
Department/Unit
Biomedical Engineering Research Centre
Division of Biomedical Engineering
Department of Human Biology
Faculty of Health Sciences
University of Cape Town