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Biomaterials|May 1, 1989
Local variation in the tearing strength of chemically modified pericardiumC E Crofts, E A TrowbridgeBiomaterials|May 1, 1987
The extension rate independence of the hysteresis in glutaraldehyde-fixed bovine pericardiumE A Trowbridge, C E CroftsJournal of Biomechanics|January 1, 1986
The standardisation of gauge length: its influence on the relative extensibility of natural and chemically modified pericardiumE A Trowbridge, C E CroftsBiomaterials|January 1, 1986
Evidence that deformations which occur during mechanical conditioning of bovine pericardium are not permanentE A Trowbridge, C E CroftsBiomaterials, Artificial Cells, and Artificial Organs|January 1, 1989
The tearing strength of glutaraldehyde fixed bovine pericardiumE A Trowbridge, C E CroftsJournal of Biomedical Engineering|October 1, 1987
Pericardial heterograft valves: an assessment of leaflet stresses and their implications for heart valve designE A Trowbridge, C E CroftsJournal of Biomedical Materials Research|February 1, 1988
The tensile strength of natural and chemically modified bovine pericardiumC E Crofts, E A TrowbridgeEuropean Journal of Applied Physiology and Occupational Physiology|January 1, 1995
The physical demands of riding in National Hunt racesE A Trowbridge, J V Cotterill, C E CroftsJournal of Biomedical Engineering|July 1, 1989
Pericardial heterografts: a comparative study of suture pull-out and tissue strengthE A Trowbridge, P V Lawford, C E CroftsThe Journal of Thoracic and Cardiovascular Surgery|April 1, 1988
Pericardial heterografts: why do these valves fail?E A Trowbridge, P V Lawford, C E Crofts, et al.Pageof 6