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Optogenetic Entrainment of Hippocampal Theta Oscillations in Behaving Mice
Published on: June 29, 2018
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Dynamic θ Frequency Coordination within and between the Prefrontal Cortex-Hippocampus Circuit during Learning of a
Conor R Dickson1, Gregory L Holmes1, Jeremy M Barry2
1Epilepsy Development and Cognition Group, Department of Neurological Sciences, University of Vermont, Larner College of Medicine, Burlington 05405, VT.
Eneuro
|April 9, 2022
Summary
Theta-band coordination between the medial prefrontal cortex (mPFC) and hippocampus increases with spatial learning. Specific sub-bands and an 8-9 Hz mPFC signal are crucial for organizing spatial avoidance behavior.
Area of Science:
- Neuroscience
- Cognitive Neuroscience
- Systems Neuroscience
Background:
- The role of theta-scale coordination between the medial prefrontal cortex (mPFC) and hippocampus (dorsal and ventral) during spatial learning is not fully understood.
- Existing hypotheses suggest connectivity levels, not cognitive demands, predetermine coordination dynamics.
Purpose of the Study:
- To investigate theta frequency coordination dynamics within and between the mPFC, dorsal hippocampus (dHC), and ventral hippocampus (vHC) during spatial learning.
- To test if coherence levels change during the learning of a complex spatial avoidance task.
Main Methods:
- Adult male rats were implanted with EEG electrodes for local field potential (LFP) recording in the mPFC, dHC, and vHC.
- LFPs were analyzed for theta (θ) coherence between these regions during a spatial avoidance task.
Main Results:
- Contrary to hypotheses, θ coherence increased across mPFC-hippocampal circuits with task learning.
- Coherence was highest in the indirectly connected mPFC-dHC circuit, especially during early training.
- A temporal sequence of coherence peaks emerged before avoidance, with distinct sub-frequency fluctuations within the θ bandwidth.
Conclusions:
- Theta coherence within and between the mPFC and hippocampus changes with spatial avoidance learning and cognitive demand.
- Specific θ coherence sub-bandwidths, particularly an 8-9 Hz mPFC signal, play a role in organizing spatial avoidance behavior.

