INTRODUCTION: Learning induces a dynamic reorganization of brain circuits but the neuronal mechanisms underlying this process are not well understood. Interregional gamma-frequency oscillations (~30 to 130 Hz) have been postulated as a mechanism to precisely coordinate upstream and downstream neuronal ensembles, for example, in the hippocampal system. The lateral (LEC) and medial (MEC) entorhinal cortex receive inputs from two distinct streams of cortical hierarchy (the “what” and the “where” paths) and convey these neuronal messages to the hippocampus. However, the mechanisms by which such messages are packaged and integrated or segregated by hippocampal circuits had yet to be explored. RATIONALE: Neuronal assemblies firing within gam...
SummaryNeurons recruited for local computations exhibit rhythmic activity at gamma frequencies. The ...
AbstractGamma frequency oscillations (30–100 Hz) have been suggested to underlie various cognitive a...
Neural computations underlying cognitive functions require calibration of the strength of excitatory...
Precisely how rhythms support neuronal communication remains obscure. We investigated interregional ...
SummaryPrecisely how rhythms support neuronal communication remains obscure. We investigated interre...
Brain regions that are structurally connected might become functionally connected by synchronization...
Precisely how rhythms support neuronal communication remains obscure. We investigated interregional ...
Locally generated gamma oscillations synchronize spikes, but the nature of coupling between regions ...
SummaryTheta-gamma network oscillations are thought to represent key reference signals for informati...
SummaryAlthough it has been tacitly assumed that the hippocampus exerts an influence on neocortical ...
SummaryThe temporary interaction of distinct gamma oscillators effects binding, association, and inf...
Gamma-band oscillations are implicated in modulation of attention, integration of sensory informatio...
Theta-gamma network oscillations are thought to represent key reference signals for information proc...
Gamma oscillations (30-150Hz) in neuronal networks are associated with the processing and recall of ...
Gamma oscillations (30–150 Hz) in neuronal networks are associated with the processing and recall of...
SummaryNeurons recruited for local computations exhibit rhythmic activity at gamma frequencies. The ...
AbstractGamma frequency oscillations (30–100 Hz) have been suggested to underlie various cognitive a...
Neural computations underlying cognitive functions require calibration of the strength of excitatory...
Precisely how rhythms support neuronal communication remains obscure. We investigated interregional ...
SummaryPrecisely how rhythms support neuronal communication remains obscure. We investigated interre...
Brain regions that are structurally connected might become functionally connected by synchronization...
Precisely how rhythms support neuronal communication remains obscure. We investigated interregional ...
Locally generated gamma oscillations synchronize spikes, but the nature of coupling between regions ...
SummaryTheta-gamma network oscillations are thought to represent key reference signals for informati...
SummaryAlthough it has been tacitly assumed that the hippocampus exerts an influence on neocortical ...
SummaryThe temporary interaction of distinct gamma oscillators effects binding, association, and inf...
Gamma-band oscillations are implicated in modulation of attention, integration of sensory informatio...
Theta-gamma network oscillations are thought to represent key reference signals for information proc...
Gamma oscillations (30-150Hz) in neuronal networks are associated with the processing and recall of ...
Gamma oscillations (30–150 Hz) in neuronal networks are associated with the processing and recall of...
SummaryNeurons recruited for local computations exhibit rhythmic activity at gamma frequencies. The ...
AbstractGamma frequency oscillations (30–100 Hz) have been suggested to underlie various cognitive a...
Neural computations underlying cognitive functions require calibration of the strength of excitatory...