Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

CS Wong, X Liu, Z Xu, T Lin, X Wang - Journal of Materials Science …, 2013 - Springer
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

C Wong, X Liu, Z Xu, T Lin, X Wang - 2013 - dro.deakin.edu.au
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft.

C Wong, X Liu, Z Xu, T Lin… - Journal of Materials …, 2013 - search.ebscohost.com
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

CS Wong, X Liu, Z Xu, T Lin… - Journal of materials …, 2013 - pubmed.ncbi.nlm.nih.gov
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

[引用][C] Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

CS WONG, XIN LIU, Z XU, T LIN… - Journal of materials …, 2013 - pascal-francis.inist.fr
Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular
graft CNRS Inist Pascal-Francis CNRS Pascal and Francis Bibliographic Databases Simple …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

CS Wong, X Liu, Z Xu, T Lin, X Wang - Journal of Materials Science …, 2013 - infona.pl
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

C Wong, X Liu, Z Xu, T Lin, X Wang - Journal of Materials Science …, 2013 - eprints.qut.edu.au
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

CS Wong, X Liu, Z Xu, T Lin… - Journal of Materials …, 2013 - search.proquest.com
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft.

CS Wong, X Liu, Z Xu, T Lin, X Wang - Journal of Materials science …, 2013 - europepmc.org
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …

[PDF][PDF] Elastin and collagen enhances electrospun aligned polyurethane as scaffolds for vascular graft

CS Wong, X Liu, Z Xu, T Lin, X Wang - J Mater Sci: Mater Med, 2013 - researchgate.net
Mismatch in mechanical properties between synthetic vascular graft and arteries contribute
to graft failure. The viscoelastic properties of arteries are conferred by elastin and collagen …