Nelson K. Totah, Ph.D.

Affiliations: 
2019- Helsinki Institute of Life Science University of Helsinki, Helsingfors, Finland 
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"Nelson Totah"
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Publications

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Saeedi A, Wang K, Nikpourian G, et al. (2024) Brightness illusions drive a neuronal response in the primary visual cortex under top-down modulation. Nature Communications. 15: 3141
Vasilev D, Raposo I, Totah NK. (2023) Brightness illusions evoke pupil constriction preceded by a primary visual cortex response in rats. Cerebral Cortex (New York, N.Y. : 1991)
Noei S, Zouridis IS, Logothetis NK, et al. (2022) Distinct ensembles in the noradrenergic locus coeruleus are associated with diverse cortical states. Proceedings of the National Academy of Sciences of the United States of America. 119: e2116507119
Vasilev D, Havel D, Liebscher S, et al. (2021) Three Water Restriction Schedules Used in Rodent Behavioral Tasks Transiently Impair Growth and Differentially Evoke a Stress Hormone Response without Causing Dehydration. Eneuro. 8
Totah NK, Logothetis NK, Eschenko O. (2021) Synchronous spiking associated with prefrontal high gamma oscillations evokes a 5 Hz-rhythmic modulation of spiking in locus coeruleus. Journal of Neurophysiology
Chandler DJ, Jensen P, McCall JG, et al. (2019) Redefining Noradrenergic Neuromodulation of Behavior: Impacts of a Modular Locus Coeruleus Architecture. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 39: 8239-8249
Totah NK, Neves RM, Panzeri S, et al. (2018) The Locus Coeruleus Is a Complex and Differentiated Neuromodulatory System. Neuron
Totah NK, Logothetis NK, Eschenko O. (2015) Atomoxetine accelerates attentional set shifting without affecting learning rate in the rat. Psychopharmacology. 232: 3697-707
Totah NK, Logothetis NK, Eschenko O. (2015) Atomoxetine accelerates attentional set shifting without affecting learning rate in the rat Psychopharmacology
Marzo A, Totah NK, Neves RM, et al. (2014) Unilateral electrical stimulation of rat locus coeruleus elicits bilateral response of norepinephrine neurons and sustained activation of medial prefrontal cortex. Journal of Neurophysiology. 111: 2570-88
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