Washington Buno

Affiliations: 
Cajal Institute  
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"Washington Buno"
Mean distance: 16.49 (cluster 11)
 
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Publications

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Fernández de Sevilla D, Núñez A, Buño W. (2020) Muscarinic Receptors, from Synaptic Plasticity to its Role in Network Activity. Neuroscience
Díez-García A, Barros-Zulaica N, Núñez Á, et al. (2017) Corrigendum: Bidirectional Hebbian Plasticity Induced by Low-Frequency Stimulation in Basal Dendrites of Rat Barrel Cortex Layer 5 Pyramidal Neurons. Frontiers in Cellular Neuroscience. 11: 112
Díez-García A, Barros-Zulaica N, Núñez Á, et al. (2017) Bidirectional Hebbian Plasticity Induced by Low-Frequency Stimulation in Basal Dendrites of Rat Barrel Cortex Layer 5 Pyramidal Neurons. Frontiers in Cellular Neuroscience. 11: 8
Domínguez S, Fernández de Sevilla D, Buño W. (2016) Muscarinic Long-Term Enhancement of Tonic and Phasic GABAA Inhibition in Rat CA1 Pyramidal Neurons. Frontiers in Cellular Neuroscience. 10: 244
Domínguez S, Fernández de Sevilla D, Buño W. (2015) Acetylcholine Facilitates a Depolarization-Induced Enhancement of Inhibition in Rat CA1 Pyramidal Neurons. Cerebral Cortex (New York, N.Y. : 1991)
Domínguez S, Fernández de Sevilla D, Buño W. (2014) Postsynaptic activity reverses the sign of the acetylcholine-induced long-term plasticity of GABAA inhibition. Proceedings of the National Academy of Sciences of the United States of America. 111: E2741-50
Ahumada J, Fernández de Sevilla D, Couve A, et al. (2013) Long-term depression of inhibitory synaptic transmission induced by spike-timing dependent plasticity requires coactivation of endocannabinoid and muscarinic receptors. Hippocampus. 23: 1439-52
Nuñez A, Domínguez S, Buño W, et al. (2012) Cholinergic-mediated response enhancement in barrel cortex layer V pyramidal neurons. Journal of Neurophysiology. 108: 1656-68
Cabezas C, Buño W. (2011) BDNF is required for the induction of a presynaptic component of the functional conversion of silent synapses. Hippocampus. 21: 374-85
Fernández de Sevilla D, Buño W. (2010) The muscarinic long-term enhancement of NMDA and AMPA receptor-mediated transmission at Schaffer collateral synapses develop through different intracellular mechanisms. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 11032-42
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