ArticleFrontiers in systems neuroscience2022
Technological Approach to Mind Everywhere: An Experimentally-Grounded Framework for Understanding Diverse Bodies and Minds.
Article in Frontiers in systems neuroscience, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 59 papers.
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Who cites it
59 citing papers in PubMed.
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- Mind Everywhere: A Framework for Conceptualizing Goal-Directedness in Biology and Other Domains-Part Two.Biological theory · 2026Article
- Mind Everywhere: A Framework for Conceptualizing Goal-Directedness in Biology and Other Domains-Part One.Biological theory · 2026Article
- Quantum entanglement and coherence in plant signaling networks: a theoretical framework.Theory in biosciences = Theorie in den Biowissenschaften · 2026Review
- The Embodied Hijack: when Pleistocene minds meet disembodied artificial intelligence.Frontiers in psychology · 2026Article
- A cybernetic framework for synthetic biological intelligence in the era of neural tissue engineering.Npj unconventional computing · 2026Review
- Oscillatory dynamics as the coordination layer of the organism: waves, Markov blankets, and the virtual space of cognition.Frontiers in neuroscience · 2026Article
- De-anthropomorphizing the mind: life as a cognitive spectrum in a unified framework for biological minds.Frontiers in systems neuroscience · 2026Article
- From chemistry to cognition: the adaptive origins of consciousness under constraint.Frontiers in neuroscience · 2026Article
- EMI-EDU: reframing learning and education through energy, mass and information.Frontiers in human neuroscience · 2026Article
- Sepsis as CNS-governed metabolic triage.Frontiers in immunology · 2026Review
- Aging as a Loss of Goal-Directedness: An Evolutionary Simulation and Analysis Unifying Regeneration with Anatomical Rejuvenation.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Discovering sensorimotor agency in cellular automata using diversity search.Science advances · 2025Article
- Intentional binding effect depends on conscious access to the sensory consequences of action.Communications psychology · 2025Article
- Associative conditioning in gene regulatory network models increases integrative causal emergence.Communications biology · 2025Article
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Abstract
Synthetic biology and bioengineering provide the opportunity to create novel embodied cognitive systems (otherwise known as minds) in a very wide variety of chimeric architectures combining evolved and designed material and software. These advances are disrupting familiar concepts in the philosophy of mind, and require new ways of thinking about and comparing truly diverse intelligences, whose composition and origin are not like any of the available natural model species. In this Perspective, I introduce TAME-Technological Approach to Mind Everywhere-a framework for understanding and manipulating cognition in unconventional substrates. TAME formalizes a non-binary (continuous), empirically-based approach to strongly embodied agency. TAME provides a natural way to think about animal sentience as an instance of collective intelligence of cell groups, arising from dynamics that manifest in similar ways in numerous other substrates. When applied to regenerating/developmental systems, TAME suggests a perspective on morphogenesis as an example of basal cognition. The deep symmetry between problem-solving in anatomical, physiological, transcriptional, and 3D (traditional behavioral) spaces drives specific hypotheses by which cognitive capacities can increase during evolution. An important medium exploited by evolution for joining active subunits into greater agents is developmental bioelectricity, implemented by pre-neural use of ion channels and gap junctions to scale up cell-level feedback loops into anatomical homeostasis. This architecture of multi-scale competency of biological systems has important implications for plasticity of bodies and minds, greatly potentiating evolvability. Considering classical and recent data from the perspectives of computational science, evolutionary biology, and basal cognition, reveals a rich research program with many implications for cognitive science, evolutionary biology, regenerative medicine, and artificial intelligence.
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