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Journal of Biomechanics
|
January 1, 2014
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
S F Carroll, C T Buckley, D J Kelly
The Journal of Antibiotics
|
November 1, 1978
Phloroglucinol derivatives from Aeromonas hydrophila
G M Strunz, R E Wall, D J Kelly
Anesthesia and Analgesia
|
June 10, 1998
Eyelid movement during complete neuromuscular block
D J Kelly, D E Wallace, S J Brull
Materials Today. Bio
|
March 12, 2020
Biomaterial-based endochondral bone regeneration: a shift from traditional tissue engineering paradigms to developmentally inspired strategies
E J Sheehy, D J Kelly, F J O'Brien
Biochemistry
|
November 17, 1992
Perturbation of the equilibrium between open and closed conformations of the periplasmic C4-dicarboxylate binding protein from Rhodobacter capsulatus
A R Walmsley, J G Shaw, D J Kelly
Transactions of the Royal Society of Tropical Medicine and Hygiene
|
November 1, 1995
Rapid, simple serodiagnosis of murine typhus
K Silpapojakul, J Pradutkanchana, S Pradutkanchana, et al.
Biochemical Society Transactions
|
November 1, 1993
Evidence that the high affinity C4-dicarboxylate transport system of Rhodobacter capsulatus is a novel type of periplasmic permease
J A Forward, M C Behrendt, D J Kelly
American Journal of Veterinary Research
|
August 1, 1982
Rocky Mountain spotted fever in areas of high and low prevalence: survey for canine antibodies to spotted fever rickettsiae
D J Kelly, J V Osterman, E H Stephenson
Molecular Microbiology
|
December 1, 1991
Purification, characterization and nucleotide sequence of the periplasmic C4-dicarboxylate-binding protein (DctP) from Rhodobacter capsulatus
J G Shaw, M J Hamblin, D J Kelly
European Cells & Materials
|
February 8, 2013
The pericellular environment regulates cytoskeletal development and the differentiation of mesenchymal stem cells and determines their response to hydrostatic pressure
A J Steward, D R Wagner, D J Kelly
Page
of 18
Search research articles
Search
Showing results (41-50 of 180) with videos related to
Sort By:
Page
of 18
Journal of Biomechanics
|
January 1, 2014
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
S F Carroll, C T Buckley, D J Kelly
The Journal of Antibiotics
|
November 1, 1978
Phloroglucinol derivatives from Aeromonas hydrophila
G M Strunz, R E Wall, D J Kelly
Anesthesia and Analgesia
|
June 10, 1998
Eyelid movement during complete neuromuscular block
D J Kelly, D E Wallace, S J Brull
Materials Today. Bio
|
March 12, 2020
Biomaterial-based endochondral bone regeneration: a shift from traditional tissue engineering paradigms to developmentally inspired strategies
E J Sheehy, D J Kelly, F J O'Brien
Biochemistry
|
November 17, 1992
Perturbation of the equilibrium between open and closed conformations of the periplasmic C4-dicarboxylate binding protein from Rhodobacter capsulatus
A R Walmsley, J G Shaw, D J Kelly
Transactions of the Royal Society of Tropical Medicine and Hygiene
|
November 1, 1995
Rapid, simple serodiagnosis of murine typhus
K Silpapojakul, J Pradutkanchana, S Pradutkanchana, et al.
Biochemical Society Transactions
|
November 1, 1993
Evidence that the high affinity C4-dicarboxylate transport system of Rhodobacter capsulatus is a novel type of periplasmic permease
J A Forward, M C Behrendt, D J Kelly
American Journal of Veterinary Research
|
August 1, 1982
Rocky Mountain spotted fever in areas of high and low prevalence: survey for canine antibodies to spotted fever rickettsiae
D J Kelly, J V Osterman, E H Stephenson
Molecular Microbiology
|
December 1, 1991
Purification, characterization and nucleotide sequence of the periplasmic C4-dicarboxylate-binding protein (DctP) from Rhodobacter capsulatus
J G Shaw, M J Hamblin, D J Kelly
European Cells & Materials
|
February 8, 2013
The pericellular environment regulates cytoskeletal development and the differentiation of mesenchymal stem cells and determines their response to hydrostatic pressure
A J Steward, D R Wagner, D J Kelly
Page
of 18