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The American Journal of Physiology|November 1, 1985
Ganglionic blockade in conscious dogs with chronic caval constrictionW D Sweet, R H Freeman, J O Davis, et al.
The American Journal of Physiology|August 1, 1975
High-output heart failure in the dog: systemic and intrarenal role of angiotensin IIR H Freeman, J O Davis, W S Spielman, et al.
Annual Review of Physiology|June 9, 2000
Mechanisms of guanylin action via cyclic GMP in the kidneyL R Forte, R M London, W J Krause, et al.
Circulation Research|May 1, 1977
Mechanisms involved in two-kidney renal hypertension induced by constriction of one renal arteryR H Freeman, J O Davis, B E Watkins, et al.
Clinical Science and Molecular Medicine. Supplement|December 1, 1978
Changes in cardiac output during the development of renal hypertension in sodium-depleted dogsJ O Davis, G A Stephens, R H Freeman, et al.
Federation Proceedings|April 1, 1977
[Des-Asp1] angiotensin II: mediator of the renin-angiotensin system?R H Freeman, J O Davis, T E Lohmeier, et al.
Circulation Research|February 1, 1987
Increased capillary hydraulic conductivity induced by atrial natriuretic peptideV H Huxley, V L Tucker, K M Verburg, et al.
American Journal of Physiology. Renal Physiology|February 9, 2000
Guanylin peptides: renal actions mediated by cyclic GMPL R Forte, R M London, R H Freeman, et al.
The American Journal of Physiology|February 1, 1986
Role of renal nerves in rats with low-sodium, one-kidney hypertensionR C Vari, R H Freeman, J O Davis, et al.
Acta Anatomica|January 1, 1997
The guanylin and uroguanylin peptide hormones and their receptorsW J Krause, R M London, R H Freeman, et al.
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