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B J Tighe

Showing results (21-30 of 33) with videos related to

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Biomechanics and Modeling in Mechanobiology|September 21, 2004
Mathematical modelling of corneal swellingL Y Li, B J Tighe, J W Ruberti
Journal of Biomaterials Science. Polymer Edition|January 1, 1992
Low temperature incorporation of bovine serum albumin into a bead formed macroporous hydrophilic polymer matrix with potential for sustained releaseT W Atkins, R L McCallion, B J Tighe
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|January 1, 1996
Determination of lubricating film thickness for permeable hydrogel and non-permeable polyurethane layers bonded to a rigid substrate with particular reference to cushion form hip joint replacementsG McClure, Z M Jin, J Fisher, et al.
Biomaterials|July 1, 1987
Polymers for biodegradable medical devices. II. Hydroxybutyrate-hydroxyvalerate copolymers: hydrolytic degradation studiesS 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 polysaccharidesM Yasin, S J Holland, A M Jolly, et al.
Biomaterials|November 1, 1993
Macroporous hydrogels for biomedical applications: methodology and morphologyH R Oxley, P H Corkhill, J H Fitton, et al.
Biomaterials|January 1, 1992
Polymer membranes in clinical sensor applications. III. Hydrogels as reactive matrix membranes in fibre optic sensorsM L Davies, S M Murphy, C J Hamilton, et al.
Cell Biology International Reports|February 1, 1984
Requirements for cell spreading on polyHEMA coated culture substratesT W Minett, B J Tighe, M J Lydon, et al.
Biomaterials|January 1, 1992
Polymer membranes in clinical sensor applications. I. An overview of membrane functionM L Davies, C J Hamilton, S M Murphy, et al.
Biomaterials|January 1, 1992
Polymer membranes in clinical sensor applications. II. The design and fabrication of permselective hydrogels for electrochemical devicesS M Murphy, C J Hamilton, M L Davies, et al.
Pageof 4

Showing results (21-30 of 33) with videos related to

Sort By:
Pageof 4
Biomechanics and Modeling in Mechanobiology|September 21, 2004
Mathematical modelling of corneal swellingL Y Li, B J Tighe, J W Ruberti
Journal of Biomaterials Science. Polymer Edition|January 1, 1992
Low temperature incorporation of bovine serum albumin into a bead formed macroporous hydrophilic polymer matrix with potential for sustained releaseT W Atkins, R L McCallion, B J Tighe
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|January 1, 1996
Determination of lubricating film thickness for permeable hydrogel and non-permeable polyurethane layers bonded to a rigid substrate with particular reference to cushion form hip joint replacementsG McClure, Z M Jin, J Fisher, et al.
Biomaterials|July 1, 1987
Polymers for biodegradable medical devices. II. Hydroxybutyrate-hydroxyvalerate copolymers: hydrolytic degradation studiesS 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 polysaccharidesM Yasin, S J Holland, A M Jolly, et al.
Biomaterials|November 1, 1993
Macroporous hydrogels for biomedical applications: methodology and morphologyH R Oxley, P H Corkhill, J H Fitton, et al.
Biomaterials|January 1, 1992
Polymer membranes in clinical sensor applications. III. Hydrogels as reactive matrix membranes in fibre optic sensorsM L Davies, S M Murphy, C J Hamilton, et al.
Cell Biology International Reports|February 1, 1984
Requirements for cell spreading on polyHEMA coated culture substratesT W Minett, B J Tighe, M J Lydon, et al.
Biomaterials|January 1, 1992
Polymer membranes in clinical sensor applications. I. An overview of membrane functionM L Davies, C J Hamilton, S M Murphy, et al.
Biomaterials|January 1, 1992
Polymer membranes in clinical sensor applications. II. The design and fabrication of permselective hydrogels for electrochemical devicesS M Murphy, C J Hamilton, M L Davies, et al.
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