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Tear-tensile-strength study of biomimetic photo-elastomers

Poster presented at Jahrestagung der Deutschen Gesellschaft für Biomaterialien 2016, 29. September - 01. Oktober 2016, Aachen
: Spielmann-Emden, Eckhardt; Hennig, Kathleen; Meyer, Wolfdietrich

Poster urn:nbn:de:0011-n-4174259 (1.1 MByte PDF)
MD5 Fingerprint: e766cf724b2e1b9805f8f2cadc23b0f9
Erstellt am: 18.10.2016

2016, 1 Folie
Deutsche Gesellschaft für Biomaterialien (DGBM Jahrestagung) <2016, Aachen>
European Commission EC
FP7-NMP; 263416; ARTIVASC 3D
Artificial vascularised scaffolds for 3D-tissue-regeneration
Poster, Elektronische Publikation
Fraunhofer IAP ()
photocurables; 3D printing; biomimetric materials

Tissue Engineering Technology makes an enormous progress in generation of biology scaffolds with functionality resembling the ones we find in the natural ideals. One of the major task is still (and will be) to exchange within the 3D generated scaffolds toxic waste-products with nutrition and oxygen. Artificial Blood vessel were materialized by light based rapid prototyping methods in several projects and the material basis used in this manufacturing processes (e.g. STL, DPL, MPP) are functionalized acrylate and its derivate that suffer from (intrinsic) poor tear-tensile-strength.