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finding:memory-remapping-across-bodies-and-contextsMemory remapping across bodies and contexts
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extracted_from(2024) · Levin, Michael
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- Gap junctions and bioelectric signals encode body-plan and memory patterns across radical biological transformation.
- Associative memories survive complete larval brain remodeling into adult Lepidoptera
- Explores memories as messages and stigmergic traces transferable between agents across time and biological substrates, grounded in planarian regeneration experiments.
Related by similarity (8)
cosine ≥ 0.65 · no typed edgeEntities in the same semantic neighborhood but without a typed relation to this one — candidates for new edges or unrecognized duplicates.
- Core hypothesis linking developmental robustness to memory remapping.
- The process of reinterpreting and recontextualizing memory engrams for new bodies and environments.
- Evidence from planarian tail fragment training and metamorphosis suggests memory is substrate-independent process.
- Phenomenon where place cells change their spatial tuning across environments; TEM-t memory neurons exhibit this property.
- Freud's insight on dynamic memory rearrangement.
Cross-corpus bridges (2)
same_concept_as · Nomic cosineExternal markdown files that talk about the same concept as this entity.
- aboutblank_kbWhat mechanisms and algorithms enable informational remapping across radically different biological contexts?questions/what-mechanisms-and-algorithms-enable-informational-remapping-across.md0.807
- aboutblank_kbMnemonic Improvisationconcepts/cognitive/mnemonic-improvisation.md0.788