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Focal CO2 dialysis in raphe obscurus does not stimulate ventilation but enhances the response to focal CO2 dialysis in the retrotrapezoid nucleusRole of nitric oxide in tolerance to lipopolysaccharide in mice.Hypoxic and hypercapnic ventilatory responses in rats with polycystic ovaries.Ionotropic glutamatergic receptors in the rostral medullary raphe modulate hypoxia and hypercapnia-induced hyperpnea.Antagonism of orexin receptor-1 in the retrotrapezoid nucleus inhibits the ventilatory response to hypercapnia predominantly in wakefulness.Purinergic transmission in the rostral but not caudal medullary raphe contributes to the hypercapnia-induced ventilatory response in unanesthetized rats.Orexinergic system in the locus coeruleus modulates the CO2 ventilatory response.Orexin in the toad Rhinella schneideri: The location of orexinergic neurons and the role of orexin in ventilatory responses to hypercarbia and hypoxia.Contribution of the retrotrapezoid nucleus/parafacial respiratory region to the expiratory-sympathetic coupling in response to peripheral chemoreflex in rats.Serotonergic neurons in the nucleus raphe obscurus contribute to interaction between central and peripheral ventilatory responses to hypercapnia.Raphe magnus nucleus is involved in ventilatory but not hypothermic response to CO2ATP in the lateral hypothalamus/perifornical area enhances the CO2 chemoreflex control of breathingGlutamate metabotropic receptors in the lateral hypothalamus/perifornical area reduce the CO2 chemoreflex
P50
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P50
description
onderzoeker
@nl
researcher ORCID ID = 0000-0002-4084-3139
@en
name
Mirela B Dias
@ast
Mirela B Dias
@en
Mirela B Dias
@nl
type
label
Mirela B Dias
@ast
Mirela B Dias
@en
Mirela B Dias
@nl
prefLabel
Mirela B Dias
@ast
Mirela B Dias
@en
Mirela B Dias
@nl
P106
P31
P496
0000-0002-4084-3139