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Experimental Cell Research|June 8, 2014
Laminin promotes vascular network formation in 3D in vitro collagen scaffolds by regulating VEGF uptakeKaterina Stamati, John V Priestley, Vivek Mudera, et al.
Journal of Tissue Engineering|August 22, 2018
Modelling multi-scale cell-tissue interaction of tissue-engineered muscle constructsRyo Torii, Rallia-Iliana Velliou, David Hodgson, et al.
Journal of Tissue Engineering and Regenerative Medicine|November 27, 2007
Ultra-rapid engineered collagen constructs tested in an in vivo nursery siteVivek Mudera, Mary Morgan, Umber Cheema, et al.
Journal of Tissue Engineering|December 27, 2021
Generating intrafusal skeletal muscle fibres in vitro: Current state of the art and future challengesPhilip Barrett, Tom J Quick, Vivek Mudera, et al.
The Journal of Physiology|October 28, 2003
Structural changes in loaded equine tendons can be monitored by a novel spectroscopic techniqueOksana Kostyuk, Helen L Birch, Vivek Mudera, et al.
Journal of Materials Science. Materials in Medicine|September 6, 2013
Effects of photochemical riboflavin-mediated crosslinks on the physical properties of collagen constructs and fibrilsHarvey Rich, Marianne Odlyha, Umber Cheema, et al.
Experimental Cell Research|December 13, 2005
The origins and regulation of tissue tension: identification of collagen tension-fixation process in vitroMassimo Marenzana, Nick Wilson-Jones, Vivek Mudera, et al.
European Journal of Oral Sciences|June 15, 2005
A three-dimensional in vitro model system to study the adaptation of craniofacial skeletal muscle following mechanostimulationAngela Auluck, Vivek Mudera, Nigel P Hunt, et al.
ACS Biomaterials Science & Engineering|January 18, 2021
Engineering of a Functional Tendon Using Collagen As a Natural PolymerPrasad Sawadkar, Paul Sibbons, Tarek Ahmed, et al.
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