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T J Wess

Showing results (21-30 of 37) with videos related to

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Biomaterials|November 12, 2003
Molecular interactions in collagen and chitosan blendsA Sionkowska, M Wisniewski, J Skopinska, et al.
Journal of Structural Biology|June 18, 2002
Structure of type I and type III heterotypic collagen fibrils: an X-ray diffraction studyG J Cameron, I L Alberts, J H Laing, et al.
Gut|July 1, 1995
Cross linking of collagen is increased in colonic diverticulosisL Wess, M A Eastwood, T J Wess, et al.
Journal of Molecular Biology|April 20, 1993
The in vivo glycation of diabetic tendon collagen studied by neutron diffractionT J Wess, L Wess, A Miller, et al.
Matrix Biology : Journal of the International Society for Matrix Biology|November 30, 2006
Domains 17-27 of tropoelastin contain key regions of contact for coacervation and contain an unusual turn-containing crosslinking domainL B Dyksterhuis, C Baldock, D Lammie, et al.
Food Chemistry|July 10, 2014
Protein and mineral characterisation of rendered meat and bone mealM Buckley, K E H Penkman, T J Wess, et al.
The Journal of Experimental Biology|October 16, 1999
The supramolecular organisation of fibrillin-rich microfibrils determines the mechanical properties of bovine zonular filamentsD M Wright, V C Duance, T J Wess, et al.
Animal : an International Journal of Animal Bioscience|March 27, 2012
Effects of frozen storage temperature on the elasticity of tendons from a small murine modelK L Goh, Y Chen, S M Chou, et al.
Biomaterials|October 22, 2003
Bone mineral change during experimental heating: an X-ray scattering investigationJ C Hiller, T J U Thompson, M P Evison, et al.
Journal of Muscle Research and Cell Motility|June 6, 2003
Fibrillin-rich microfibrils: elastic biopolymers of the extracellular matrixC M Kielty, T J Wess, L Haston, et al.
Pageof 4

Showing results (21-30 of 37) with videos related to

Sort By:
Pageof 4
Biomaterials|November 12, 2003
Molecular interactions in collagen and chitosan blendsA Sionkowska, M Wisniewski, J Skopinska, et al.
Journal of Structural Biology|June 18, 2002
Structure of type I and type III heterotypic collagen fibrils: an X-ray diffraction studyG J Cameron, I L Alberts, J H Laing, et al.
Gut|July 1, 1995
Cross linking of collagen is increased in colonic diverticulosisL Wess, M A Eastwood, T J Wess, et al.
Journal of Molecular Biology|April 20, 1993
The in vivo glycation of diabetic tendon collagen studied by neutron diffractionT J Wess, L Wess, A Miller, et al.
Matrix Biology : Journal of the International Society for Matrix Biology|November 30, 2006
Domains 17-27 of tropoelastin contain key regions of contact for coacervation and contain an unusual turn-containing crosslinking domainL B Dyksterhuis, C Baldock, D Lammie, et al.
Food Chemistry|July 10, 2014
Protein and mineral characterisation of rendered meat and bone mealM Buckley, K E H Penkman, T J Wess, et al.
The Journal of Experimental Biology|October 16, 1999
The supramolecular organisation of fibrillin-rich microfibrils determines the mechanical properties of bovine zonular filamentsD M Wright, V C Duance, T J Wess, et al.
Animal : an International Journal of Animal Bioscience|March 27, 2012
Effects of frozen storage temperature on the elasticity of tendons from a small murine modelK L Goh, Y Chen, S M Chou, et al.
Biomaterials|October 22, 2003
Bone mineral change during experimental heating: an X-ray scattering investigationJ C Hiller, T J U Thompson, M P Evison, et al.
Journal of Muscle Research and Cell Motility|June 6, 2003
Fibrillin-rich microfibrils: elastic biopolymers of the extracellular matrixC M Kielty, T J Wess, L Haston, et al.
Pageof 4