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Mechanical & Manufacturing Eng
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Mechanical & Manufacturing Eng
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BUCKLEY, CONOR (14)
KELLY, DANIEL (13)
VINARDELL, TATIANA (3)
AHEARNE, MARK (1)
CUNNIFFE, GRÁINNE (1)
O'BRIEN, FERGAL (1)
ROLFE, REBECCA (1)
STEWARD, ANDREW (1)
THORPE, STEPHEN (1)
Subject
Next Generation Medical Devices (14)
Bioengineering (4)
Biomaterials (2)
Hydrostatic pressure (2)
Mesenchymal stem cell (2)
Mesenchymal stem cells (2)
3D Cell Culture (1)
Agarose (1)
anatomical, biomaterials, stem cells, tissue engineering, endochondral, alginate (1)
Arthritis (1)
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Date Issued
2016 (1)
2015 (2)
2014 (5)
2013 (1)
2012 (2)
2011 (2)
2010 (1)
Sponsor
Science Foundation Ireland (SFI) (7)
European Research Council (ERC) (2)
Irish Research Council for Science and Engineering Technology (IRCSET) (1)
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Composition-function relations of cartilaginous tissues engineered from chondrocytes and mesenchymal stem cells isolated from bone marrow and infrapatellar fat pad
KELLY, DANIEL
;
BUCKLEY, CONOR
;
VINARDELL, TATIANA
(
2011
)
Low oxygen tension is a more potent promoter of chondrogenic
KELLY, DANIEL
;
BUCKLEY, CONOR
(
2010
)
Tissue engineering whole bones through endochondral ossification: Regenerating the distal phalanx
BUCKLEY, CONOR
;
KELLY, DANIEL
(
2015
)
The effect of cyclic hydrostatic pressure on the functional development of cartilaginous tissues engineered using bone marrow derived mesenchymal stem cells
KELLY, DANIEL
;
BUCKLEY, CONOR
(
2011
)
A comparison of self-assembly and hydrogel encapsulation as a means to engineer functional cartilaginous grafts using culture expanded chondrocytes.
KELLY, DANIEL
;
BUCKLEY, CONOR
(
2014
)
Altering the architecture of tissue engineered hypertrophic cartilaginous grafts facilitates vascularisation and accelerates mineralisation.
BUCKLEY, CONOR
;
VINARDELL, TATIANA
;
KELLY, DANIEL
(
2014
)
Cell-matrix interactions regulate mesenchymal stem cell response to hydrostatic pressure
STEWARD, ANDREW
;
KELLY, DANIEL
;
THORPE, STEPHEN
;
BUCKLEY, CONOR
(
2012
)
Cyclic Hydrostatic Pressure Promotes A Stable Cartilage Phenotype And Enhances The Functional Development Of Cartilaginous Grafts Engineered Using Multipotent Stromal Cells Isolated From Bone Marrow And Infrapatellar Fat Pad.
BUCKLEY, CONOR
;
KELLY, DANIEL
(
2014
)
Infrapatellar Fat Pad-Derived Stem Cells Maintain Their Chondrogenic Capacity in Disease and Can be Used to Engineer Cartilaginous Grafts of Clinically Relevant Dimensions.
KELLY, DANIEL
;
BUCKLEY, CONOR
(
2014
)
Engineering osteochondral constructs through spatial regulation of endochondral ossification.
KELLY, DANIEL
;
BUCKLEY, CONOR
(
2013
)
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