hypothesis
active
prediction:developmental-bioelectricity-scales-cell-level-feedback-into-anatomical-homeostasisDevelopmental bioelectricity scales cell-level feedback into anatomical homeostasis.
Source paper
extracted_from(2022) · Levin, Michael
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.
- Posits deep evolutionary continuity between somatic pattern control and neural cognition.
- Symmetry claim driving the evolutionary pivot model.
- Developmental bioelectricity is proposed as a tractable entry point to understand the informational architecture of collective intelligence in morphogenesis.
- Bioelectric patterns serve as re-writable pattern memories for anatomical homeostasis.
- Core thesis: bioelectric networks provide the mechanism by which single-cell homeostasis becomes organism-level agency through integration and feedback loops.
- Empirical finding supporting the cognitive light cone concept and collective cellular intelligence claims
- Bioelectric networks formed by gap junctions scale cell-level homeostatic loops into organ-level anatomical homeostasis.hypothesis0.809Proposed mechanism for scaling of goal-directed activity from cells to tissues.
- Predictive hypothesis validated in planarians and other species; enables therapeutic manipulation of morphogenetic targets.
Cross-corpus bridges (12)
same_concept_as · Nomic cosineExternal markdown files that talk about the same concept as this entity.
- aboutblank_kbWhat mechanisms scale cell-level feedback loops into anatomical and behavioral organization?questions/what-mechanisms-scale-celllevel-feedback-loops-into-anatomical.md0.875
- aboutblank_kbHow do bioelectric networks scale cell computation into anatomical homeostasis and regulate morphogenesis?questions/how-do-bioelectric-networks-scale-cell-computation-into.md0.873
- aboutblank_kbWhat are the detailed mechanisms by which bioelectric patterns scale up from subcellular to tissue and organ levels?questions/what-are-the-detailed-mechanisms-by-which-bioelectric.md0.843
- aboutblank_kbDevelopmental Bioelectricity Frameworkframeworks/developmental-bioelectricity-framework.md0.832
- aboutblank_kbHow do simple bioelectric trigger states scale up into complex, organ-level anatomical control without micromanagement of component cells?questions/how-do-simple-bioelectric-trigger-states-scale-up.md0.831
- aboutblank_kbHow do bioelectric patterns in non-neural tissues give rise to goal-directed behavior and cognition?questions/how-do-bioelectric-patterns-in-nonneural-tissues-give.md0.824
- aboutblank_kbCan anatomical homeostasis and morphological goal-directedness be reversed through bioelectric reprogramming?questions/can-anatomical-homeostasis-and-morphological-goaldirectedness-be-reversed.md0.824
- aboutblank_kbWhat is the relationship between bioelectric signals and body form determination during development and regeneration?questions/what-is-the-relationship-between-bioelectric-signals-and.md0.821
- aboutblank_kbDevelopmental Bioelectricityconcepts/cognitive/membrane-potential.md0.821
- aboutblank_kbCan bioelectric code explain cancer as a problem of anatomical homeostasis?questions/can-bioelectric-code-explain-cancer-as-a-problem.md0.821
- aboutblank_kbDevelopmental Bioelectricityconcepts/biology/developmental-bioelectricity.md0.819
- aboutblank_kbHow do evolutionary transitions in individuality relate to bioelectric integration?questions/how-do-evolutionary-transitions-in-individuality-relate-to.md0.814