hypothesis
active
prediction:all-content-of-minds-resides-in-electrophysiological-states-and-can-be-read-out-from-bioelectric-networksAll content of minds resides in electrophysiological states and can be read out from bioelectric networks
Source paper
extracted_from(2023) · Levin, Michael
Neighborhood — ranked by edge-count
Frameworks (1)
framework
- Bioelectric NetworkssupportsAncient mechanism using ion channels, gap junctions, and neurotransmitters as 'cognitive glue' enabling collective intelligence across morphogenesis and behavior.
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.
- Foundational for understanding how physiology becomes meaning; decoupling of material state from information content is prerequisite for emergence of cognitive Self.
- Core thesis: bioelectric networks provide the mechanism by which single-cell homeostasis becomes organism-level agency through integration and feedback loops.
- Supported directly by the two-headed planarian and head-shape experiments.
- Evidence that pre-neural bioelectric infrastructure predates and likely precedes neurobiology; supports continuity of intelligence across substrates.
- Bioelectric states can serve as master regulators of organogenesis, bypassing the need to manipulate downstream genetic cascades.hypothesis0.781Predicts that simple voltage changes can trigger complex modular morphogenetic programs, useful for regenerative medicine.
Cross-corpus bridges (2)
same_concept_as · Nomic cosineExternal markdown files that talk about the same concept as this entity.
- aboutblank_kbNeural Decodingframeworks/neural-decoding.md0.831
- aboutblank_kbWhere is memory physically stored if not in synaptic structures, and how does the brain interpret engrams embodied in subcellular components?questions/where-is-memory-physically-stored-if-not-in.md0.787