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Daniel J Kelly

Showing results (91-100 of 204) with videos related to

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Biochemical and Biophysical Research Communications|June 1, 2020
The identification of articular cartilage and growth plate extracellular matrix-specific proteins supportive of either osteogenesis or stable chondrogenesis of stem cellsPedro J Díaz-Payno, David C Browe, Gráinne M Cunniffe, et al.
Acta Biomaterialia|January 13, 2023
Bioprinting of structurally organized meniscal tissue within anisotropic melt electrowritten scaffoldsXavier Barceló, Kian F Eichholz, Inês F Gonçalves, et al.
Biomechanics and Modeling in Mechanobiology|December 17, 2010
Prediction of fibre architecture and adaptation in diseased carotid bifurcationsArthur Creane, Eoghan Maher, Sherif Sultan, et al.
Connective Tissue Research|November 29, 2017
Chondrocyte-based intraoperative processing strategies for the biological augmentation of a polyurethane meniscus replacementSrujana Vedicherla, Sara Romanazzo, Daniel J Kelly, et al.
Biomaterials|February 13, 2018
3D printed microchannel networks to direct vascularisation during endochondral bone repairAndrew C Daly, Pierluca Pitacco, Jessica Nulty, et al.
Journal of Biomechanics|September 22, 2009
Tensile and compressive properties of fresh human carotid atherosclerotic plaquesEoghan Maher, Arthur Creane, Sherif Sultan, et al.
Biomaterials Advances|January 7, 2026
Combining cartilaginous microtissues primed under altered oxygen environments with melt electrowritten meshes to engineer scaled-up graftsNadia Rodriguez, Inês F Gonçalves, Tom Hodgkinson, et al.
Computers in Biology and Medicine|June 24, 2025
An in silico study reveals how architectural and mechanical cues jointly regulate angiogenesis and bone regeneration in 3D printed scaffoldsChiara Dazzi, Kian F Eichholz, Fiona E Freeman, et al.
Tissue Engineering. Part A|December 30, 2025
Inhibition of <i>miR-221</i> in Human MSCs Supports the Engineering of Hyaline Cartilage MicrotissuesNadia Rodriguez, Pere Dosta, Fiona E Freeman, et al.
Tissue Engineering. Part A|March 27, 2012
The role of environmental factors in regulating the development of cartilaginous grafts engineered using osteoarthritic human infrapatellar fat pad-derived stem cellsYurong Liu, Conor T Buckley, Richard Downey, et al.
Pageof 21

Showing results (91-100 of 204) with videos related to

Sort By:
Pageof 21
Biochemical and Biophysical Research Communications|June 1, 2020
The identification of articular cartilage and growth plate extracellular matrix-specific proteins supportive of either osteogenesis or stable chondrogenesis of stem cellsPedro J Díaz-Payno, David C Browe, Gráinne M Cunniffe, et al.
Acta Biomaterialia|January 13, 2023
Bioprinting of structurally organized meniscal tissue within anisotropic melt electrowritten scaffoldsXavier Barceló, Kian F Eichholz, Inês F Gonçalves, et al.
Biomechanics and Modeling in Mechanobiology|December 17, 2010
Prediction of fibre architecture and adaptation in diseased carotid bifurcationsArthur Creane, Eoghan Maher, Sherif Sultan, et al.
Connective Tissue Research|November 29, 2017
Chondrocyte-based intraoperative processing strategies for the biological augmentation of a polyurethane meniscus replacementSrujana Vedicherla, Sara Romanazzo, Daniel J Kelly, et al.
Biomaterials|February 13, 2018
3D printed microchannel networks to direct vascularisation during endochondral bone repairAndrew C Daly, Pierluca Pitacco, Jessica Nulty, et al.
Journal of Biomechanics|September 22, 2009
Tensile and compressive properties of fresh human carotid atherosclerotic plaquesEoghan Maher, Arthur Creane, Sherif Sultan, et al.
Biomaterials Advances|January 7, 2026
Combining cartilaginous microtissues primed under altered oxygen environments with melt electrowritten meshes to engineer scaled-up graftsNadia Rodriguez, Inês F Gonçalves, Tom Hodgkinson, et al.
Computers in Biology and Medicine|June 24, 2025
An in silico study reveals how architectural and mechanical cues jointly regulate angiogenesis and bone regeneration in 3D printed scaffoldsChiara Dazzi, Kian F Eichholz, Fiona E Freeman, et al.
Tissue Engineering. Part A|December 30, 2025
Inhibition of <i>miR-221</i> in Human MSCs Supports the Engineering of Hyaline Cartilage MicrotissuesNadia Rodriguez, Pere Dosta, Fiona E Freeman, et al.
Tissue Engineering. Part A|March 27, 2012
The role of environmental factors in regulating the development of cartilaginous grafts engineered using osteoarthritic human infrapatellar fat pad-derived stem cellsYurong Liu, Conor T Buckley, Richard Downey, et al.
Pageof 21