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Stephen D Thorpe

Showing results (1-10 of 41) with videos related to

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Nucleus (Austin, Tex.)|October 8, 2016
Highlight on the dynamic organization of the nucleusStephen D Thorpe, Myriam Charpentier
Nucleus (Austin, Tex.)|February 3, 2017
Dynamic regulation of nuclear architecture and mechanics-a rheostatic role for the nucleus in tailoring cellular mechanosensitivityStephen D Thorpe, David A Lee
Tissue Engineering. Part A|April 21, 2009
Engineering of large cartilaginous tissues through the use of microchanneled hydrogels and rotational cultureConor T Buckley, Stephen D Thorpe, Daniel J Kelly
Biomedical Materials (Bristol, England)|September 23, 2015
The effects of dynamic compression on the development of cartilage grafts engineered using bone marrow and infrapatellar fat pad derived stem cellsLu Luo, Stephen D Thorpe, Conor T Buckley, et al.
Plos One|April 25, 2013
Modulating gradients in regulatory signals within mesenchymal stem cell seeded hydrogels: a novel strategy to engineer zonal articular cartilageStephen D Thorpe, Thomas Nagel, Simon F Carroll, et al.
Frontiers in Bioengineering and Biotechnology|December 28, 2020
Mechanical Stimulation: A Crucial Element of Organ-on-Chip ModelsClare L Thompson, Su Fu, Martin M Knight, et al.
Journal of Clinical Medicine|July 2, 2021
Pancreatic Ductal Adenocarcinoma: Relating Biomechanics and PrognosisBenjamin M MacCurtain, Ned P Quirke, Stephen D Thorpe, et al.
Journal of Biomechanics|June 19, 2010
Low oxygen tension is a more potent promoter of chondrogenic differentiation than dynamic compressionEric G Meyer, Conor T Buckley, Stephen D Thorpe, et al.
Journal of Biomechanics|August 29, 2012
European Society of Biomechanics S.M. Perren Award 2012: the external mechanical environment can override the influence of local substrate in determining stem cell fateStephen D Thorpe, Conor T Buckley, Andrew J Steward, et al.
Computational and Structural Biotechnology Journal|November 11, 2024
Machine learning and artificial intelligence: Enabling the clinical translation of atomic force microscopy-based biomarkers for cancer diagnosisAidan T O'Dowling, Brian J Rodriguez, Tom K Gallagher, et al.
Pageof 5

Showing results (1-10 of 41) with videos related to

Sort By:
Pageof 5
Nucleus (Austin, Tex.)|October 8, 2016
Highlight on the dynamic organization of the nucleusStephen D Thorpe, Myriam Charpentier
Nucleus (Austin, Tex.)|February 3, 2017
Dynamic regulation of nuclear architecture and mechanics-a rheostatic role for the nucleus in tailoring cellular mechanosensitivityStephen D Thorpe, David A Lee
Tissue Engineering. Part A|April 21, 2009
Engineering of large cartilaginous tissues through the use of microchanneled hydrogels and rotational cultureConor T Buckley, Stephen D Thorpe, Daniel J Kelly
Biomedical Materials (Bristol, England)|September 23, 2015
The effects of dynamic compression on the development of cartilage grafts engineered using bone marrow and infrapatellar fat pad derived stem cellsLu Luo, Stephen D Thorpe, Conor T Buckley, et al.
Plos One|April 25, 2013
Modulating gradients in regulatory signals within mesenchymal stem cell seeded hydrogels: a novel strategy to engineer zonal articular cartilageStephen D Thorpe, Thomas Nagel, Simon F Carroll, et al.
Frontiers in Bioengineering and Biotechnology|December 28, 2020
Mechanical Stimulation: A Crucial Element of Organ-on-Chip ModelsClare L Thompson, Su Fu, Martin M Knight, et al.
Journal of Clinical Medicine|July 2, 2021
Pancreatic Ductal Adenocarcinoma: Relating Biomechanics and PrognosisBenjamin M MacCurtain, Ned P Quirke, Stephen D Thorpe, et al.
Journal of Biomechanics|June 19, 2010
Low oxygen tension is a more potent promoter of chondrogenic differentiation than dynamic compressionEric G Meyer, Conor T Buckley, Stephen D Thorpe, et al.
Journal of Biomechanics|August 29, 2012
European Society of Biomechanics S.M. Perren Award 2012: the external mechanical environment can override the influence of local substrate in determining stem cell fateStephen D Thorpe, Conor T Buckley, Andrew J Steward, et al.
Computational and Structural Biotechnology Journal|November 11, 2024
Machine learning and artificial intelligence: Enabling the clinical translation of atomic force microscopy-based biomarkers for cancer diagnosisAidan T O'Dowling, Brian J Rodriguez, Tom K Gallagher, et al.
Pageof 5