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Brain Research|April 29, 1985
Tyrosine accelerates catecholamine synthesis in hemorrhaged hypotensive ratsL A Conlay, T J Maher, R J Wurtman
Science (New York, N.Y.)|May 1, 1981
Tyrosine increases blood pressure in hypotensive ratsL A Conlay, T J Maher, R J Wurtman
Life Sciences|September 10, 1984
Tyrosine's pressor effect in hypotensive rats is not mediated by tyramineL A Conlay, T J Maher, R J Wurtman
Neurochemistry International|January 1, 1988
Effects of hemorrhagic hypotension on tyrosine concentrations in rat spinal cord and plasmaL A Conlay, T J Maher, C H Roberts, et al.
Journal of Neural Transmission|January 1, 1983
Tyrosine's vasoactive effect in the dog shock model depends on the animal's starting blood pressureL A Conlay, T J Maher, P L Moses, et al.
Brain Research|June 4, 1986
Spinal cord noradrenergic neurons are activated in hypotensionL A Conlay, T J Maher, B F Godley, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 1, 1988
Endogenous adenosine and hemorrhagic shock: effects of caffeine administration or caffeine withdrawalL A Conlay, G Evoniuk, R J Wurtman
International Journal of Sports Medicine|October 1, 1992
Exercise and neuromodulators: choline and acetylcholine in marathon runnersL A Conlay, L A Sabounjian, R J Wurtman
Life Sciences|March 7, 1983
Chronic caffeine consumption potentiates the hypotensive action of circulating adenosineR W von Borstel, R J Wurtman, L A Conlay
Journal of Neural Transmission|January 1, 1987
Effects of oral aspartame on plasma phenylalanine in humans and experimental rodents. Short noteR J Wurtman, T J Maher
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