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Quarterly Journal of Experimental Physiology (Cambridge, England)|September 1, 1988
Hydrostatic pressure enhances baroreceptor reflexes in the ratF Bowser-Riley, C KiddExperimental Physiology|May 1, 1996
Effects of moderate hypothermia on baroreflex and pulmonary chemoreflex heart rate response in decerebrate ferretsF Zheng, C Kidd, F Bowser-RileyExperimental Physiology|September 1, 1995
The effect of raised hydrostatic pressure on heart rate variability during breath holding in manD E Byrne, F Bowser-Riley, C KiddExperimental Physiology|November 1, 1990
Role of vagal afferent C fibres in the bradycardiac response to an increase in arterial blood pressure in ferretsF Bowser-Riley, M Cornish, C Kidd, et al.Experimental Physiology|May 1, 1996
The effect of exposure to increased hydrostatic pressure up to 46 ATA on respiratory sinus arrhythmia in humansD E Byrne, F Bowser-Riley, M J Cornish, et al.Undersea Biomedical Research|July 1, 1992
An investigation of cardiovascular reflexes during a trimix saturation dive to 450 msw (GUSI 17)F Bowser-Riley, M J Cornish, R Hainsworth, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|January 7, 1984
Mechanistic studies on the high pressure neurological syndromeF Bowser-RileyCell and Tissue Research|March 13, 1978
The salivary glands of the cockroach Nauphoeta cinerea (Olivier). A study of its innervation by light and scanning electron microscopyF Bowser-RileyThe Journal of Experimental Biology|June 1, 1976
The actions of some putative neurotransmitters on the cockroach salivary glandF Bowser-Riley, C R HouseBritish Journal of Pharmacology|August 1, 1988
Investigations into the origin of the high pressure neurological syndrome: the interaction between pressure, strychnine and 1,2-propandiols in the mouseF Bowser-Riley, S Daniels, E B SmithPageof 12