Journal article
High synaptic threshold for dendritic NMDA spike generation in human layer 2/3 pyramidal neurons
G Testa-Silva, M Rosier, S Honnuraiah, R Guzulaitis, AM Megias, C French, J King, K Drummond, LM Palmer, GJ Stuart
Cell Reports | CELL PRESS | Published : 2022
Open access
Abstract
Neurons receive synaptic input primarily onto their dendrites. While we know much about the electrical properties of dendrites in rodents, we have only just started to describe their properties in the human brain. Here, we investigate the capacity of human dendrites to generate NMDA-receptor-dependent spikes (NMDA spikes). Using dendritic glutamate iontophoresis, as well as local dendritic synaptic stimulation, we find that human layer 2/3 pyramidal neurons can generate dendritic NMDA spikes. The capacity to evoke NMDA spikes in human neurons, however, was significantly reduced compared with that in rodents. Simulations in morphologically realistic and simplified models indicated that human ..
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Grants
Awarded by Sylvia and Charles Viertel Charitable Foundation
Funding Acknowledgements
Acknowledgments This research was funded by an Australian Research Council Discovery Proj- ect grant to G.J.S. and L.M.P. (DP190103296) and the Sylvia and Charles Vier- tel Charitable Foundation (L.M.P.) .