MARIA ANGELES
GOMEZ NIÑO
CATEDRATICOS DE ESCUELA UNIVERSITARIA
CONSTANCIO
GONZALEZ MARTINEZ
Investigador en el periodo 1986-2015
Publicaciones en las que colabora con CONSTANCIO GONZALEZ MARTINEZ (21)
2014
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Fernando de castro and the discovery of the arterial chemoreceptors
Frontiers in Neuroanatomy, Vol. 8, Núm. MAY
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Intermittent hypoxia and diet-induced obesity: Effects on oxidative status, sympathetic tone, plasma glucose and insulin levels, and arterial pressure
Journal of Applied Physiology, Vol. 117, Núm. 7, pp. 706-719
2012
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Some reflections on intermittent hypoxia. Does it constitute the translational niche for carotid body chemoreceptor researchers?
Advances in Experimental Medicine and Biology
2010
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A revisit to O2 sensing and transduction in the carotid body chemoreceptors in the context of reactive oxygen species biology
Respiratory Physiology and Neurobiology, Vol. 174, Núm. 3, pp. 317-330
2009
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Effects of mitochondrial poisons on glutathione redox potential and carotid body chemoreceptor activity
Respiratory Physiology and Neurobiology, Vol. 165, Núm. 1, pp. 104-111
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General redox environment and carotid body chemoreceptor function
American Journal of Physiology - Cell Physiology, Vol. 296, Núm. 3
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MaxiK potassium channels in the function of chemoreceptor cells of the rat carotid body
American Journal of Physiology - Cell Physiology, Vol. 297, Núm. 3
2007
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Chemoreception in the context of the general biology of ROS
Respiratory Physiology and Neurobiology, Vol. 157, Núm. 1, pp. 30-44
2006
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Modification of the glutathione redox environment and chemoreceptor cell responses
Advances in Experimental Medicine and Biology
2002
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Significance of ROS in oxygen sensing in cell systems with sensitivity to physiological hypoxia
Respiratory Physiology and Neurobiology, Vol. 132, Núm. 1, pp. 17-41
1999
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NADPH oxidase inhibition does not interfere with low PO2 transduction in rat and rabbit CB chemoreceptor cells
American Journal of Physiology - Cell Physiology, Vol. 276, Núm. 3 45-3
1997
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Evidence for two types of nicotinic receptors in the cat carotid body chemoreceptor cells
Brain Research, Vol. 754, Núm. 1-2, pp. 298-302
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Mechanisms of α2-adrenoceptor-mediated inhibition in rabbit carotid body
American Journal of Physiology - Cell Physiology, Vol. 272, Núm. 2 41-2
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Stimulus-specific mobilization of dopamine and norepinephrine stores in cat carotid body
Journal of the Autonomic Nervous System, Vol. 67, Núm. 1-2, pp. 109-113
1994
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In vitro activation of cyclo‐oxygenase in the rabbit carotid body: effect of its blockade on [3H]catecholamine release.
The Journal of Physiology, Vol. 476, Núm. 2, pp. 257-267
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Inhibition of [3H]catecholamine release and Ca2+ currents by prostaglandin E2 in rabbit carotid body chemoreceptor cells.
The Journal of Physiology, Vol. 476, Núm. 2, pp. 269-277
1993
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Neurotransmitters and second messenger systems in the carotid body
Advances in Experimental Medicine and Biology, Vol. 337, pp. 279-287
1992
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Potentiation by cyclooxygenase inhibitors of the release of catecholamines from the rabbit carotid body and its reversal by prostaglandin E2
Neuroscience Letters, Vol. 140, Núm. 1, pp. 1-4
1991
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Muscarinic receptor localization and function in rabbit carotid body
Brain Research, Vol. 562, Núm. 2, pp. 190-198
1990
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Differential stimulus coupling to dopamine and norepinephrine stores in rabbit carotid body type I cells
Brain Research, Vol. 525, Núm. 1, pp. 160-164