Fernando Morgan de Aguiar Côrrea, PhD

Affiliations: 
1974- Pharmacology Federal University of São Paulo - FMRP-USP, Ribeirão Preto, São Paulo, Brazil 
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"Fernando Côrrea"
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Hartmann A, Fassini A, Scopinho A, et al. (2019) Role of the endocannabinoid system in the dorsal hippocampus in the cardiovascular changes and delayed anxiety-like effect induced by acute restraint stress in rats. Journal of Psychopharmacology (Oxford, England). 269881119827799
Surkin PN, Gallino SL, Luce V, et al. (2018) Pharmacological augmentation of endocannabinoid signaling reduces the neuroendocrine response to stress. Psychoneuroendocrinology. 87: 131-140
Brasil TFS, Fassini A, Corrêa FM. (2018) AT1 and AT2 Receptors in the Prelimbic Cortex Modulate the Cardiovascular Response Evoked by Acute Exposure to Restraint Stress in Rats. Cellular and Molecular Neurobiology. 38: 305-316
Ferreira-Junior NC, Lagatta DC, Fabri DR, et al. (2017) Hippocampal subareas arranged in the dorsoventral axis modulate cardiac baroreflex function in a site-dependent manner in rats. Experimental Physiology. 102: 14-24
Lagatta DC, Ferreira-Junior NC, Deolindo M, et al. (2016) Ventrolateral periaqueductal grey matter neurotransmission modulates cardiac baroreflex activity. The European Journal of Neuroscience. 44: 2877-2884
Fassini A, Resstel LB, Corrêa FM. (2016) Prelimbic cortex GABAA receptors are involved in the mediation of restraint stress-evoked cardiovascular responses. Stress (Amsterdam, Netherlands). 19: 576-584
Estrada VB, Matsubara NK, Gomes MV, et al. (2016) Noradrenaline microinjected into the dorsal periaqueductal gray matter causes anxiolytic-like effects in rats tested in the elevated T-maze. Life Sciences. 152: 94-8
Fassini A, Scopinho AA, Resstel LB, et al. (2016) NOP receptors in the prelimbic cortex have an inhibitory influence on cardiovascular responses induced by restraint stress. Neuropeptides. 57: 35-44
Fortaleza EA, Ferreira-Junior NC, Lagatta DC, et al. (2015) The medial amygdaloid nucleus modulates the baroreflex activity in conscious rats. Autonomic Neuroscience : Basic & Clinical. 193: 44-50
Stanquini LA, Resstel LB, Corrêa FM, et al. (2015) Prelimbic cortex 5-HT1A and 5-HT2C receptors are involved in the hypophagic effects caused by fluoxetine in fasted rats. Pharmacology, Biochemistry, and Behavior. 136: 31-8
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