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#cognitivemaps — Public Fediverse posts

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  1. …During pursuit, sweeps narrow and track a moving target; after sudden target changes, they reorient before the animal turns; during backward locomotion, they reverse; and even during #REM sleep, sweep structure is modulated.

    A fascinating view of #ThetaSweeps as an attention-like mechanism for querying #CognitiveMaps in real time.

    #Neuroscience #Hippocampus #GridCells #PlaceCells #Navigation

  2. …During pursuit, sweeps narrow and track a moving target; after sudden target changes, they reorient before the animal turns; during backward locomotion, they reverse; and even during #REM sleep, sweep structure is modulated.

    A fascinating view of #ThetaSweeps as an attention-like mechanism for querying #CognitiveMaps in real time.

    #Neuroscience #Hippocampus #GridCells #PlaceCells #Navigation

  3. This paper by Raju et al. proposes a unified model – “clone‑structured causal #graphs” (#CSCG) – for #hippocampal #SpatialCoding. It suggests that #SpatialMaps arise from #learning #latent higher‑order sequences rather than representing #EuclideanSpace directly. The model elegantly explains phenomena like #PlaceFields, #SplitterCells, #contextual #remapping, and predicts when #PlaceFieldMapping may mislead.

    🌍 science.org/doi/10.1126/sciadv

    #Hippocampus #CognitiveMaps #SequenceLearning #Neuroscience

  4. This paper by Raju et al. proposes a unified model – “clone‑structured causal #graphs” (#CSCG) – for #hippocampal #SpatialCoding. It suggests that #SpatialMaps arise from #learning #latent higher‑order sequences rather than representing #EuclideanSpace directly. The model elegantly explains phenomena like #PlaceFields, #SplitterCells, #contextual #remapping, and predicts when #PlaceFieldMapping may mislead.

    🌍 science.org/doi/10.1126/sciadv

    #Hippocampus #CognitiveMaps #SequenceLearning #Neuroscience