finding
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finding:morphogenetic-remapping-across-ploidy-levels-and-cell-sizesMorphogenetic remapping across ploidy levels and cell sizes
Source paper
extracted_from(2024) · Levin, Michael
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Communities (3)
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- Levin-led research showing bioelectric signals encode and control anatomical goal states in living systems.
- Levin-influenced framework treating tissue-level morphogenesis as goal-directed, problem-solving intelligence via bioelectric signaling.
- Bioelectric and behavioral frameworks treating morphogenesis as problem-solving intelligence across scales, bridging Alexander's architectural principles with Levin's experimental regenerative biology.
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 open problem: asks how cellular competency affords evolutionary speed and robustness despite the ruggedness of the genotype-phenotype mapping.
- Process by which cellular collectives generate large-scale structure and form; presented as a collective intelligence problem.
- The speed and reliability with which a collective reaches the target morphology.
- Highlights the non-genetic control of large-scale anatomy.
- The sequence of unfolding and adaptation that generates living form, whether biological or architectural.
Cross-corpus bridges (1)
same_concept_as · Nomic cosineExternal markdown files that talk about the same concept as this entity.
- aboutblank_kbHow can systems with messy, polyploid genomes maintain the most robust morphological control?questions/how-can-systems-with-messy-polyploid-genomes-maintain.md0.782