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C D Bertram

Showing results (21-30 of 65) with videos related to

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Medical & Biological Engineering & Computing|July 1, 1989
Cross-sectional area measurement in collapsed tubes using the transformer principleC D Bertram, C Ribreau
Journal of Biomechanical Engineering|February 1, 1992
Possible sources of discrepancy between sphygmomanometer cuff pressure and blood pressure quantified in a collapsible-tube analogueC D Bertram, K S Butcher
Journal of Biomechanics|January 1, 1982
A mathematical model of unsteady collapsible tube behaviourC D Bertram, T J Pedley
Journal of Biomechanical Engineering|February 1, 1992
A general method of determining the frequency-dependent propagation coefficient and characteristic impedance of an artery in the presence of reflectionsC D Bertram, S E Greenwald
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|July 4, 2008
Measurement and analysis of the flow field in a pulsatile ventricularassist deviceA H Nugent, C D Bertram
Medical Engineering & Physics|May 19, 2000
Interactions of pulsatile upstream forcing with flow-induced oscillations of a collapsed tube: mode-lockingC D Bertram, M D Sheppeard
The Journal of Physiology|June 4, 2025
Control of lymphatic pacemaking and pumping by mechanobiological signalsM J Davis, C D Bertram
Medical & Biological Engineering & Computing|September 1, 1984
Optical endpoint sensing in an automatic whole blood clotting timerC D Bertram, B K Milthorpe
Medical & Biological Engineering & Computing|September 1, 1991
Measurements of wave speed and compliance in a collapsible tube during self-excited oscillations: a test of the choking hypothesisC D Bertram, C J Raymond
Circulation Research|December 1, 1978
The relation between arterial viscoelasticity and wave propagation in the canine femoral artery in vivoW R Milnor, C D Bertram
Pageof 7

Showing results (21-30 of 65) with videos related to

Sort By:
Pageof 7
Medical & Biological Engineering & Computing|July 1, 1989
Cross-sectional area measurement in collapsed tubes using the transformer principleC D Bertram, C Ribreau
Journal of Biomechanical Engineering|February 1, 1992
Possible sources of discrepancy between sphygmomanometer cuff pressure and blood pressure quantified in a collapsible-tube analogueC D Bertram, K S Butcher
Journal of Biomechanics|January 1, 1982
A mathematical model of unsteady collapsible tube behaviourC D Bertram, T J Pedley
Journal of Biomechanical Engineering|February 1, 1992
A general method of determining the frequency-dependent propagation coefficient and characteristic impedance of an artery in the presence of reflectionsC D Bertram, S E Greenwald
Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|July 4, 2008
Measurement and analysis of the flow field in a pulsatile ventricularassist deviceA H Nugent, C D Bertram
Medical Engineering & Physics|May 19, 2000
Interactions of pulsatile upstream forcing with flow-induced oscillations of a collapsed tube: mode-lockingC D Bertram, M D Sheppeard
The Journal of Physiology|June 4, 2025
Control of lymphatic pacemaking and pumping by mechanobiological signalsM J Davis, C D Bertram
Medical & Biological Engineering & Computing|September 1, 1984
Optical endpoint sensing in an automatic whole blood clotting timerC D Bertram, B K Milthorpe
Medical & Biological Engineering & Computing|September 1, 1991
Measurements of wave speed and compliance in a collapsible tube during self-excited oscillations: a test of the choking hypothesisC D Bertram, C J Raymond
Circulation Research|December 1, 1978
The relation between arterial viscoelasticity and wave propagation in the canine femoral artery in vivoW R Milnor, C D Bertram
Pageof 7