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Theta Rhythms Coordinate Hippocampal–Prefrontal Interactions in a Spatial Memory Task

PLoS Biology · 2005 · Vol. 3(12) · pp. e402–e402
Matthew W. JonesMatthew A. Wilson

Abstract

Decision-making requires the coordinated activity of diverse brain structures. For example, in maze-based tasks, the prefrontal cortex must integrate spatial information encoded in the hippocampus with mnemonic information concerning route and task rules in order to direct behavior appropriately. Using simultaneous tetrode recordings from CA1 of the rat hippocampus and medial prefrontal cortex, we show that correlated firing in the two structures is selectively enhanced during behavior that recruits spatial working memory, allowing the integration of hippocampal spatial information into a broader, decision-making network. The increased correlations are paralleled by enhanced coupling of the two structures in the 4- to 12-Hz theta-frequency range. Thus the coordination of theta rhythms may constitute a general mechanism through which the relative timing of disparate neural activities can be controlled, allowing specialized brain structures to both encode information independently and to interact selectively according to current behavioral demands.

Memory and Neural MechanismsNeuroscience and Neuropharmacology ResearchNeural dynamics and brain functionPrefrontal cortexNeuroscienceHippocampal formationHippocampusMnemonicSpatial memoryRhythmWorking memoryTask (project management)Biology

MeSH terms

AnimalsHippocampusMaleMemorySpace PerceptionTheta RhythmTime FactorsPrefrontal CortexRats, Long-EvansRats

Funding

  • Massachusetts Institute of Technology
  • Wellcome Trust
  • National Institute of Mental Health
Citations
1,049
FWCI
8.70
field-weighted impact
References
65
Percentile
99%
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