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Biomaterials
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September 1, 1990
Polymers for biodegradable medical devices. V. Hydroxybutyrate-hydroxyvalerate copolymers: effects of polymer processing on hydrolytic degradation
M Yasin, S J Holland, B J Tighe
Biomaterials
|
April 1, 1990
Polymers for biodegradable medical devices. VII. Hydroxybutyrate-hydroxyvalerate copolymers: degradation of copolymers and their blends with polysaccharides under in vitro physiological conditions
S J Holland, M Yasin, B J Tighe
Molecular and Cellular Biology
|
October 5, 2001
Downregulation of the Ras-mitogen-activated protein kinase pathway by the EphB2 receptor tyrosine kinase is required for ephrin-induced neurite retraction
S Elowe, S J Holland, S Kulkarni, et al.
Current Opinion in Neurobiology
|
May 6, 1998
Cell-contact-dependent signalling in axon growth and guidance: Eph receptor tyrosine kinases and receptor protein tyrosine phosphatase beta
S J Holland, E Peles, T Pawson, et al.
Biomaterials
|
July 1, 1987
Polymers for biodegradable medical devices. II. Hydroxybutyrate-hydroxyvalerate copolymers: hydrolytic degradation studies
S J Holland, A M Jolly, M Yasin, et al.
Biomaterials
|
August 1, 1989
Polymers for biodegradable medical devices. VI. Hydroxybutyrate-hydroxyvalerate copolymers: accelerated degradation of blends with polysaccharides
M Yasin, S J Holland, A M Jolly, et al.
Animal Reproduction Science
|
November 6, 2002
Factors affecting gestation length in the Thoroughbred mare
M C G Davies Morel, J R Newcombe, S J Holland
Molecular and Cellular Biology
|
June 10, 2000
Phosphorylation of tyrosine residues in the kinase domain and juxtamembrane region regulates the biological and catalytic activities of Eph receptors
K L Binns, P P Taylor, F Sicheri, et al.
Nature
|
October 24, 1996
Bidirectional signalling through the EPH-family receptor Nuk and its transmembrane ligands
S J Holland, N W Gale, G Mbamalu, et al.
Molecular Cell
|
January 15, 2000
Multiple ephrins control cell organization in C. elegans using kinase-dependent and -independent functions of the VAB-1 Eph receptor
X Wang, P J Roy, S J Holland, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 15) with videos related to
Sort By:
Page
of 2
Biomaterials
|
September 1, 1990
Polymers for biodegradable medical devices. V. Hydroxybutyrate-hydroxyvalerate copolymers: effects of polymer processing on hydrolytic degradation
M Yasin, S J Holland, B J Tighe
Biomaterials
|
April 1, 1990
Polymers for biodegradable medical devices. VII. Hydroxybutyrate-hydroxyvalerate copolymers: degradation of copolymers and their blends with polysaccharides under in vitro physiological conditions
S J Holland, M Yasin, B J Tighe
Molecular and Cellular Biology
|
October 5, 2001
Downregulation of the Ras-mitogen-activated protein kinase pathway by the EphB2 receptor tyrosine kinase is required for ephrin-induced neurite retraction
S Elowe, S J Holland, S Kulkarni, et al.
Current Opinion in Neurobiology
|
May 6, 1998
Cell-contact-dependent signalling in axon growth and guidance: Eph receptor tyrosine kinases and receptor protein tyrosine phosphatase beta
S J Holland, E Peles, T Pawson, et al.
Biomaterials
|
July 1, 1987
Polymers for biodegradable medical devices. II. Hydroxybutyrate-hydroxyvalerate copolymers: hydrolytic degradation studies
S J Holland, A M Jolly, M Yasin, et al.
Biomaterials
|
August 1, 1989
Polymers for biodegradable medical devices. VI. Hydroxybutyrate-hydroxyvalerate copolymers: accelerated degradation of blends with polysaccharides
M Yasin, S J Holland, A M Jolly, et al.
Animal Reproduction Science
|
November 6, 2002
Factors affecting gestation length in the Thoroughbred mare
M C G Davies Morel, J R Newcombe, S J Holland
Molecular and Cellular Biology
|
June 10, 2000
Phosphorylation of tyrosine residues in the kinase domain and juxtamembrane region regulates the biological and catalytic activities of Eph receptors
K L Binns, P P Taylor, F Sicheri, et al.
Nature
|
October 24, 1996
Bidirectional signalling through the EPH-family receptor Nuk and its transmembrane ligands
S J Holland, N W Gale, G Mbamalu, et al.
Molecular Cell
|
January 15, 2000
Multiple ephrins control cell organization in C. elegans using kinase-dependent and -independent functions of the VAB-1 Eph receptor
X Wang, P J Roy, S J Holland, et al.
Page
of 2