Reorganization of anterior cingulate cortex-CA1 communication after learning selectively suppresses superficial CA1 neurons, aiding memory consolidation.
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Reorganization of anterior cingulate cortex-CA1 communication after learning selectively suppresses superficial CA1 neurons, aiding memory consolidation.
Inferential planning in the frontal cortex produces simultaneous neural representations of multiple action elements, challenging classical sequential models and revealing complex neural subspaces.
A molecularly anchored spatial transcriptomic framework accurately delineates CA1 and Subiculum regions, revealing distinct molecular features and transition zones in the human hippocampus.
A conserved autoregulatory loop involving retinoic acid and MEIS2 directs prefrontal-motor cortical arealization in humans and mice.
Hippocampal astrocytes generate time-compressed calcium sequences during learning and recall, resembling neuronal time-cell activity, in the dorsal CA1 region of mice.
Dominance hierarchy influences innate defensive behaviors in mice, with social presence reducing stress and shifting responses depending on threat type and rank.
Overlapping fear-related representations in vCA1 enable rapid memory switching, with vCA1 showing greater overlap and faster reinstatement than dCA1 during fear retrieval.
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