A distinct class of bursting neuronswith strong gamma synchronizationand stimulus selectivity in monkey V1

Author Onorato, Irene; Maciel, Sergio Tulio Neuenschwander; Hoy, Jennifer; Lima, Bruss; Rocha, Katia-Simone; Broggini, Ana Clara; Uran, Cem; Spyropoulos, Georgios; Klon-Lipok, Johanna; Womelsdorf, Thilo; Fries, Pascal; Niell, Cristopher; Singer, Wolf; Vinck, Martin
Date

2019-11-12

Keywords

Bursting

cell class

cell type

excitatory

gamma oscillation

monkey V1

interneuron

orientation tuning

Citation
Abstract

Cortical computation depends on interactions between excitatory and inhibitory neurons. The contributions of distinct neuron types to sensory processing and network synchronization in primate visual cortex remain largely undetermined. We show that in awake monkey V1, there exists a distinct cell type (››30% of neurons) that has narrow-waveform (NW) action potentials and high spontaneous discharge rates and fires in high-frequency bursts. These neurons are more stimulus selective and phase locked to 30- to 80-Hz gamma oscillations than other neuron types. Unlike other neuron types, their gamma-phase locking is highly predictive of orientation tuning. We find evidence for strong rhythmic inhibition in these neurons, suggesting that they interact with interneurons to act as excitatory pacemakers for the V1 gamma rhythm. We did not find a similar class of NW bursting neurons in L2-L4 of mouse V1. Given its properties, this class of NW bursting neurons should be pivotal for the encoding and transmission of stimulus information.

URIhttps://repositorio.ufrn.br/jspui/handle/123456789/27914
CollectionsICe - Artigos publicados em periódicos