framework
active
framework:automata-chemistriesAutomata Chemistries
Artificial Life research paradigm relying on self-modifying code (e.g., Tierra, Avida, Stringmol) to evolve digital organisms.
Neighborhood — ranked by edge-count
Papers (1)
paper
Thinkers (1)
thinker
- John von NeumannstudiesTheorist who postulated self-replicating machines demonstrating machines can make other machines.
Artifacts (5)
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- StringmolimplementsSelf-modifying-code artificial chemistry shown to exhibit type-1 and type-2 novelty.
- AvidaimplementsComputational evolutionary biology platform using self-modifying digital organisms, co-developed by co-author Ofria.
- EvoMachinaimplementsMeta-evolutionary algorithm with mutator and mutator-mutator machines enabling self-mutation.
- PhysisimplementsEarly self-modifying assembly-level metalanguage / genotype-phenotype mapping system.
- TierraimplementsEarly automata-chemistry Artificial Life system using self-modifying assembly code.
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 computational paradigm of local rules producing emergent global behavior, extended by this work
- Mechanism of self-sustaining organization in nonequilibrium systems; relevant to understanding intention formation.
- Co-founded by Marvin Minsky; gatekeeping institution for AI research; holder of power over research agenda.
- Ashby's 1967 foundational work on formal automata and adaptive learning; cited as key precedent for the Good Regulator theorem.
- Prior framework combining cellular automata with deep learning, extended by this work
- Synthetic morphology with agential materials (Davies & Levin, Nature Reviews Bioengineering 2023)concept0.683Paper on engineering with agential biological materials