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finding:caterpillar-to-butterfly-memory-remapping-demonstrates-that-being-does-not-bring-specific-memories-but-deep-lessons-redeployed-in-new-embodimentCaterpillar-to-butterfly memory remapping demonstrates that being does not bring specific memories but deep lessons redeployed in new embodiment
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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.
- Explores how learned behaviors and functional memory survive complete neural restructuring during metamorphosis, testing substrate-independence of identity and continuity.
- Associative memories survive complete larval brain remodeling into adult Lepidoptera
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.
- Key biological finding supporting the claim that identity can persist through radical physical transformation
- Empirical example where memories remain despite drastic refactoring of brain tissue and body; demonstrates need for creative reinterpretation rather than passive storage.
- Cited empirical result supporting the claim that memory persists through radical self-transformation.
- Empirical finding from Blackiston et al. 2008, demonstrating memory across radical body change.
- Empirical demonstration that memories persist through massive brain and body remodeling during metamorphosis, challenging notions of stable Self-substrate binding.
- Core hypothesis linking developmental robustness to memory remapping.
Cross-corpus bridges (2)
same_concept_as · Nomic cosineExternal markdown files that talk about the same concept as this entity.
- aboutblank_kbHow do memories persist and remain functionally relevant when organisms undergo drastic physical transformation (e.g., caterpillar to butterfly)?questions/how-do-memories-persist-and-remain-functionally-relevant.md0.843
- aboutblank_kbCan the same principles of memory remapping explain skill transfer in embodied robotic systems?questions/can-the-same-principles-of-memory-remapping-explain.md0.782