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collagen valve tissue matrix cross-link modulu property subchondral chondrocyte alginate beads osteoarthritis fi broblasts subchondral bone cartilage culture alginate heart effect aortic collagen cross-links tgfb 2 beads direction biomechanical collagen content broblast study matrix modulus circumferential direction trabecular result correlation heart valves engineering plastic content monolayer condition model circumferential amount osteoarthritic signi adaptation valve lea flets biomechanical properties collagen cross-linking presence environment tissue engineering disease strip number expression increase level factor 28 days stress sample type i collagen / adaptation collagen fi bers bone volume fraction collagen type ii type ii collagen denatured collagen lea flets addition subchondral stiffening difference phenotype netherland subchondral bone plate deposition structure strain articular osteoarthritic bone growth
3 Most Recent Publications
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TGFbeta affects collagen cross-linking independent of chondrocyte phenotype but strongly depending on physical environment
(Article)
Bastiaansen-Jenniskens, Y.M. Koevoet, J.L.M. Bart, A.C.W. de Zuurmond, A-M. Bank, R.A. Verhaar, J.A.N. Groot, J. de Osch, G.J.V.M. van |
2008-06-01
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The role of collagen cross-links in biomechanical behavior of human aortic heart valve leaflets - Relevance for tissue engineering
(Article)
Balguid, A. Rubbens, M.P. Mol, A. Bank, R.A. Bogers, A.J.J.C. Kats, J.P. van Mol, B.A.J.M. de Baaijens, F.P.T. Bouten, C.V.C. |
2007-07-01
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Adaptation of subchondral bone in osteoarthritis
(Article)
Day, J.S. Linden, J.C. van der Bank, R.A. Ding, M. Hvid, I. Sumner, D.R. Weinans, H.H. |
2004-01-01
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