André Dagostin

Affiliations: 
Physiololgy University of São Paulo, São Paulo, São Paulo, Brazil 
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"André Dagostin"
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Publications

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Zemel BM, Nevue AA, Tavares LES, et al. (2023) Motor cortex analogue neurons in songbirds utilize Kv3 subunits to generate ultranarrow spikes. Elife. 12
Maganin AG, Souza GR, Fonseca MD, et al. (2022) Meningeal dendritic cells drive neuropathic pain through elevation of the kynurenine metabolic pathway in mice. The Journal of Clinical Investigation
Zemel BM, Nevue AA, Dagostin A, et al. (2021) Resurgent Na currents promote ultrafast spiking in projection neurons that drive fine motor control. Nature Communications. 12: 6762
Lujan B, Dagostin A, von Gersdorff H. (2019) Presynaptic diversity revealed by Ca-permeable AMPA receptors at the Calyx of Held synapse. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Dagostin A, Kushmerick C, von Gersdorff H. (2018) Allegro giusto: piccolo, bassoon, and clarinet set the tempo of vesicle pool replenishment. The Journal of Physiology
Dagostin AA, Lovell PV, Hilscher MM, et al. (2015) Control of Phasic Firing by a Background Leak Current in Avian Forebrain Auditory Neurons. Frontiers in Cellular Neuroscience. 9: 471
Garcia-Cairasco N, Moyses-Neto M, Del Vecchio F, et al. (2013) Elucidating the neurotoxicity of the star fruit. Angewandte Chemie (International Ed. in English). 52: 13067-70
Dagostin AA, Mello CV, Leão RM. (2012) Increased bursting glutamatergic neurotransmission in an auditory forebrain area of the zebra finch (Taenopygia guttata) induced by auditory stimulation. Journal of Comparative Physiology. a, Neuroethology, Sensory, Neural, and Behavioral Physiology. 198: 705-16
Pinaud R, Terleph TA, Tremere LA, et al. (2008) Inhibitory network interactions shape the auditory processing of natural communication signals in the songbird auditory forebrain. Journal of Neurophysiology. 100: 441-55
Accorsi-Mendonça D, Almado CE, Dagostin AL, et al. (2008) Inhibition of spontaneous neurotransmission in the nucleus of solitary tract of the rat by the cannabinoid agonist WIN 55212-2 is not via CB1 or CB2 receptors. Brain Research. 1200: 1-9
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