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Peripheral chemoreceptors and cardiovascular regulation
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Marshall JM. Peripheral chemoreceptors and cardiovascular regulation. Physiol. Rev. 1994; 74: 543-94.
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Physiol. Rev.
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Marshall, J.M.1
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Analysis of the cardiovascular changes induced in the rat by graded levels of systemic hypoxia
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Marshall JM, Metcalfe JD. Analysis of the cardiovascular changes induced in the rat by graded levels of systemic hypoxia. J. Physiol. 1988; 407: 385-403.
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Marshall, J.M.1
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Effects of systemic hypoxia on the distribution of cardiac output in the rat
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Marshall JM, Metcalfe JD. Effects of systemic hypoxia on the distribution of cardiac output in the rat. J. Physiol. 1990; 426: 335-53.
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Vasodilatation, oxygen delivery and oxygen consumption in rat hindlimb during systemic hypoxia: Roles of nitric oxide
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Edmunds NJ, Marshall JM. Vasodilatation, oxygen delivery and oxygen consumption in rat hindlimb during systemic hypoxia: Roles of nitric oxide. J. Physiol. 2001; 532: 251-9.
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Edmunds, N.J.1
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The role of vasopressin in the regional vascular responses evoked in the spontaneously breathing rat by systemic hypoxia
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Louwerse A-M, Marshall JM. The role of vasopressin in the regional vascular responses evoked in the spontaneously breathing rat by systemic hypoxia. J. Physiol. 1993; 470: 463-72.
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Louwerse, A.-M.1
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6
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CO2 maintained
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Abstract
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Louwerse A-M, Marshall JM. The role of the renin-angiotensin system in the cardiovascular response to systemic hypoxia in the rat with PaCO2 maintained. J. Physiol. 1993; 452: 319P (Abstract).
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Louwerse, A.-M.1
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Influences on the cardiovascular response to graded levels of systemic hypoxia of the accompanying hypocapnia in the rat
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Marshall JM, Metcalfe JD. Influences on the cardiovascular response to graded levels of systemic hypoxia of the accompanying hypocapnia in the rat. J. Physiol. 1989; 410: 381-94.
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8
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2A adrenoreceptors in determining muscle vasodilatation induced in the rat by systemic hypoxia
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2A adrenoreceptors in determining muscle vasodilatation induced in the rat by systemic hypoxia. Exp. Physiol. 1990; 75: 407-10.
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Mian, R.1
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Adenosine and the local regulation of blood flow: A brief overview
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Berne RM, Knabb RM, Ely SW, Rubio R. Adenosine and the local regulation of blood flow: A brief overview. Fed. Proc. 1983; 42: 3136-42.
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The role of adenosine in the respiratory and cardiovascular response to systemic hypoxia in the rat
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Neylon M, Marshall JM. The role of adenosine in the respiratory and cardiovascular response to systemic hypoxia in the rat. J. Physiol. 1991; 440: 529-45.
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Neylon, M.1
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Differentiation of the peripherally-mediated from the centrally-mediated influences of adenosine in the rat during systemic hypoxia
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Thomas T, Elnazir BK, Marshall JM. Differentiation of the peripherally-mediated from the centrally-mediated influences of adenosine in the rat during systemic hypoxia. Exp. Physiol. 1994; 79: 809-22.
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Adenosine contribute to hypoxia-induced forearm vasodilation in humans
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Leuenberger UA, Gray K, Herr MD. Adenosine contribute to hypoxia-induced forearm vasodilation in humans. J. Appl. Physiol. 1999; 87: 2218-24.
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Cloned receptors and cardiovascular responses to adenosine
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Tucker AL, Linden J. Cloned receptors and cardiovascular responses to adenosine. Cardiovasc. Res. 1993; 27: 62-7.
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Tucker, A.L.1
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1 receptors
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Bryan PT, Marshall JM. Adenosine receptor subtypes and vasodilatation in rat skeletal muscle during systemic hypoxia: A role for A1 receptors. J. Physiol. 1999; 514: 151-62.
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Hypoxia stimulates release of endothelium-derived relaxant factor
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Pohl U, Busse R. Hypoxia stimulates release of endothelium-derived relaxant factor. Am. J. Physiol. 1989; 256: H1595-600.
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Studies on the roles of ATP, adenosine and nitric oxide in mediating muscle vasodilatation induced in the rat by acute systemic hypoxia
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Skinner MR, Marshall JM. Studies on the roles of ATP, adenosine and nitric oxide in mediating muscle vasodilatation induced in the rat by acute systemic hypoxia. J. Physiol. 1996; 495: 553-60.
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Skinner, M.R.1
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Responses observed in individual arterioles and venules of rat skeletal muscle during systemic hypoxia
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Mian R, Marshall JM. Responses observed in individual arterioles and venules of rat skeletal muscle during systemic hypoxia. J. Physiol. 1991; 436: 485-97.
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The roles of catecholamines in responses evoked in arterioles and venules of rat skeletal muscle by systemic hypoxia
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Mian R, Marshall JM. The roles of catecholamines in responses evoked in arterioles and venules of rat skeletal muscle by systemic hypoxia. J. Physiol. 1991; 436: 499-510.
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Direct observations of the effects of baroreceptor stimulation on skeletal muscle circulation of the rat
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Hebert MT, Marshall JM. Direct observations of the effects of baroreceptor stimulation on skeletal muscle circulation of the rat. J. Physiol. 1988; 400: 45-59.
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The influence of vasopressin on the arterioles and venules of skeletal muscle of the rat during systemic hypoxia
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Marshall JM, Lloyd J, Mian R. The influence of vasopressin on the arterioles and venules of skeletal muscle of the rat during systemic hypoxia. J. Physiol. 1993; 470: 473-84.
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The role of adenosine in dilator responses induced in arterioles and venules of rat skeletal muscle in systemic hypoxia
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Regulation of capillary blood flow and oxygen supply in skeletal muscle in dogs during hypoxaemia
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The ability of adenosine to generate nitric oxide in human umbilical vein endothelial cells
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Rolleston S, Marshall JM. The ability of adenosine to generate nitric oxide in human umbilical vein endothelial cells. J. Physiol. 2000; 523P: 151P (Abstract).
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Interactions of adenosine, nitric oxide and the cyclo-oxygenase pathway in freshly excised rat aorta
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The role of prostaglandins in skeletal muscle vasodilatation evoked by acute systemic hypoxia in the rat
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Abbas MR, Marshall JM. The role of prostaglandins in skeletal muscle vasodilatation evoked by acute systemic hypoxia in the rat. J. Physiol. 2000; 523P: 248-9P (Abstract).
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Synergistic action of vasodilators that increase cGMP and cAMP in the hamster cremaster microcirculation
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Cellular mechanisms by which adenosine induces vasodilatation in rat skeletal muscle: Significance for systemic hypoxia
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Bryan PT, Marshall JM. Cellular mechanisms by which adenosine induces vasodilatation in rat skeletal muscle: Significance for systemic hypoxia. J. Physiol. 1999; 514: 163-75.
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+ channels in adenosine-evoked nitric oxide (NO) release from human umbilical vein endothelial cells (HUVEC)
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+ channels in adenosine-evoked nitric oxide (NO) release from human umbilical vein endothelial cells (HUVEC). J. Physiol. 2001; 531P: 31P (Abstract).
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Adenosine activated potassium current in smooth muscles isolated from pig coronary artery
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Dart C, Standen N. Adenosine activated potassium current in smooth muscles isolated from pig coronary artery. J. Physiol. 1993; 471: 767-86.
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