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Respiration Physiology|November 1, 1996
A tidal breathing model of the forced inspired inert gas sinewave techniqueD J Gavaghan, C E HahnRespiration Physiology|October 1, 1995
A mathematical evaluation of the alveolar amplitude response techniqueD J Gavaghan, C E HahnJournal of Theoretical Biology|December 28, 1999
The effect of the width of the ventilation-perfusion distribution on arterial blood oxygen contentJ P Whiteley, D J Gavaghan, C E HahnJournal of Applied Physiology (Bethesda, Md. : 1985)|July 20, 1999
A tidal breathing model for the multiple inert gas elimination techniqueJ P Whiteley, D J Gavaghan, C E HahnJournal of Theoretical Biology|June 2, 2000
The effect of inspired oxygen concentration on the ventilation-perfusion distribution in inhomogeneous lungsJ P Whiteley, D J Gavaghan, C E HahnRespiration Physiology|November 21, 2000
A tidal breathing model of the inert gas sinewave technique for inhomogeneous lungsJ P Whiteley, D J Gavaghan, C E HahnMathematical Biosciences|February 13, 2001
Some factors affecting oxygen uptake by red blood cells in the pulmonary capillariesJ P Whiteley, D J Gavaghan, C E HahnJournal of Theoretical Biology|October 29, 1998
A mathematical evaluation of the multiple breath nitrogen washout (MBNW) technique and the multiple inert gas elimination technique (MIGET)J P Whiteley, D J Gavaghan, C E HahnJournal of Theoretical Biology|April 26, 2001
Modelling inert gas exchange in tissue and mixed-venous blood return to the lungsJ P Whiteley, D J Gavaghan, C E HahnConference Proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference|October 20, 2007
Modulation of shock-end virtual electrode polarisation as a direct result of 3D fluorescent photon scatteringM J Bishop, B Rodriguez, N Trayanova, et al.Pageof 3