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Author Details

Tristan Geiller
Columbia University, USA Mortimer B Zuckerman Mind Brain Behavior Institute
2017
15
10
PMIDPaper TitleJournal TitlePublished Year
36878147A local circuit-basis for spatial navigation and memory processes in hippocampal area CA1.Curr Opin Neurobiol2023
36993553Organization and Plasticity of Inhibition in Hippocampal Recurrent Circuits.bioRxiv2023
37081295Inhibitory control of sharp-wave ripple duration during learning in hippocampal recurrent networks.Nat Neurosci2023
34990571Local feedback inhibition tightly controls rapid formation of hippocampal place fields.Neuron2022
34853473Local circuit amplification of spatial selectivity in the hippocampus.Nature2022
34880499Adaptive stimulus selection for consolidation in the hippocampus.Nature2022
35298275Compartment-specific tuning of dendritic feature selectivity by intracellular Ca<sup>2+</sup> release.Science2022
34648750Recruitment and inhibitory action of hippocampal axo-axonic cells during behavior.Neuron2021
33022227Large-Scale 3D Two-Photon Imaging of Molecularly Identified CA1 Interneuron Dynamics in Behaving Mice.Neuron2020
31980319A Role for the Locus Coeruleus in Hippocampal CA1 Place Cell Reorganization during Spatial Reward Learning.Neuron2020
30297851Sparsened neuronal activity in an optogenetically activated olfactory glomerulus.Sci Rep2018
29954846Differential Representation of Landmark and Self-Motion Information along the CA1 Radial Axis: Self-Motion Generated Place Fields Shift toward Landmarks during Septal Inactivation.J Neurosci2018
28811673Improving a genetically encoded voltage indicator by modifying the cytoplasmic charge composition.Sci Rep2017
28243162Segregated Cell Populations Enable Distinct Parallel Encoding within the Radial Axis of the CA1 Pyramidal Layer.Exp Neurobiol2017
28218283Place cells are more strongly tied to landmarks in deep than in superficial CA1.Nat Commun2017
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