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Tissue Engineering. Part A|April 25, 2008
Mechanical stimulation of osteoblasts using steady and dynamic fluid flowMichael J Jaasma, Fergal J O'BrienJournal of Biomedical Materials Research. Part A|September 4, 2008
Osteoblast activity on collagen-GAG scaffolds is affected by collagen and GAG concentrationsClaire M Tierney, Michael J Jaasma, Fergal J O'BrienJournal of Biotechnology|January 29, 2008
Design and validation of a dynamic flow perfusion bioreactor for use with compliant tissue engineering scaffoldsMichael J Jaasma, Niamh A Plunkett, Fergal J O'BrienJournal of Biomedical Materials Research. Part A|April 24, 2008
The effect of dehydrothermal treatment on the mechanical and structural properties of collagen-GAG scaffoldsMatthew G Haugh, Michael J Jaasma, Fergal J O'BrienTissue Engineering. Part A|October 4, 2008
A comparative study of shear stresses in collagen-glycosaminoglycan and calcium phosphate scaffolds in bone tissue-engineering bioreactorsChristian Jungreuthmayer, Seth W Donahue, Michael J Jaasma, et al.Technology and Health Care : Official Journal of the European Society for Engineering and Medicine|January 21, 2011
Bioreactors in tissue engineeringNiamh Plunkett, Fergal J O'BrienBiomaterials|October 4, 2015
Insoluble elastin reduces collagen scaffold stiffness, improves viscoelastic properties, and induces a contractile phenotype in smooth muscle cellsAlan J Ryan, Fergal J O'BrienBiotechnology and Bioengineering|May 26, 2012
Visualizing feasible operating ranges within tissue engineering systems using a "windows of operation" approach: a perfusion-scaffold bioreactor case studyRyan J McCoy, Fergal J O'BrienTissue Engineering. Part B, Reviews|August 31, 2010
Influence of shear stress in perfusion bioreactor cultures for the development of three-dimensional bone tissue constructs: a reviewRyan J McCoy, Fergal J O'BrienCell Adhesion & Migration|April 28, 2010
Understanding the effect of mean pore size on cell activity in collagen-glycosaminoglycan scaffoldsCiara M Murphy, Fergal J O'BrienPageof 29