paper:doi-10-1016-j-cell-2021-02-034Bioelectric signaling: Reprogrammable circuits underlying embryogenesis, regeneration, and cancer
Related work— refs + corpus + external arXiv
Cited / in-corpus / arXiv badges show which signals surfaced each row. Multi-source rows weighted higher.
- AI-driven control of bioelectric signalling for real-time topological reorganization of cellsGon\c{c}alo Hora de Carvalho2025≈ 82%
- Bioelectrical Interfaces Beyond Cellular Excitability: Cancer, Aging, and Gene Expression ReprogrammingMatthew Burgess, Catarina Franco Jones, Titouan Luciani, Marzia Iarossi, Manuel Schr\"oter, Nako Nakatsuka, Mustafa B. A. Djamgoz, Gil Gon\c{c}alves, Paola Sanju\'an-Alberte, Paula M. Mendes, Frankie J. Rawson, Malavika Nair, Michael Levin, Rosalia Moreddu Paolo Cadinu2025≈ 82%
- Brief Architectural Survey of Biopotential Recording Front-Ends since the 1970sMinkyu Je Taeju Lee2023≈ 77%
- The computational boundary of a 'self': developmental bioelectricity drives multicellularity and scale-free cognitionin corpus2019≈ 77%
- Developmental Bioelectricity: the cognitive glue enabling evolutionary scaling from physiology to mindin corpus2023≈ 77%
- Modeling Bioelectric State Transitions in Glial Cells: An ASAL-Inspired Computational Approach to Glioblastoma InitiationWiktoria Agata Pawlak2025≈ 75%
- Microelectronic Morphogenesis: Progress towards Artificial OrganismsDaniil Karnaushenko, Minshen Zhu and Oliver G. Schmidt John S. McCaskill2024≈ 75%
- Prediction of Cellular Malignancy Using Electrical Impedance Signatures and Supervised Machine LearningShadeeb Hossain2026≈ 74%
- Simulating Tissue Morphogenesis and SignalingSimon Tanaka, Patrick Fried, Philipp Germann and Denis Menshykau Dagmar Iber2013≈ 73%
- Collective intelligence: A unifying concept for integrating biology across scales and substratesin corpus2024≈ 73%
- Engineering morphogenesis of cell clusters with differentiable programmingFrancesco Mottes, Ariana-Dalia Vlad, Michael P. Brenner, Alma dal Co Ramya Deshpande2025≈ 73%
- Darwin's agential materials: evolutionary implications of multiscale competency in developmental biologyin corpus2023≈ 73%
- The Neoplasia as embryological phenomenon and its implication in the animal evolution and the origin of cancer. I. A presentation of the neoplastic process and its connection with cell fusion and germline formationKay Saalfeld Jaime Cofre2026≈ 72%
- The biogenic approach to cognitionin corpus2005≈ 72%
- ≈ 72%
- Plant Bioelectric Early Warning Systems: A Five-Year Investigation into Human-Plant Electromagnetic CommunicationPeter A. Gloor2025≈ 72%
- ≈ 72%
- ≈ 71%
- Cell differentiation can underpin the reproducibility of morphogenesisAusten RD Ganley, Nobuto Takeuchi Dominic K Devlin2025≈ 71%
- ≈ 71%
- Certified Circuits: Stability Guarantees for Mechanistic CircuitsTobias Lorenz, Bernt Schiele, Mario Fritz, Jonas Fischer Alaa Anani2026≈ 71%
- ≈ 71%
- ≈ 71%
- ≈ 71%
- Endless forms most beautiful 2.0: teleonomy and the bioengineering of chimaeric and synthetic organismsin corpus2023≈ 70%
- ≈ 70%
- ≈ 69%
- ≈ 69%
- Zoom In: An Introduction to Circuitsin corpus2020≈ 68%
Similar preprints — Semantic Scholar
Cited by (8)
- Developmental Bioelectricity: the cognitive glue enabling evolutionary scaling from physiology to mind
Developmental bioelectricity—the network of ion channels, gap junctions, and neurotransmitter-mediated Vmem (membrane potential) dynamics operating across all body cells, not just neurons—functions as
- Darwin's agential materials: evolutionary implications of multiscale competency in developmental biology
Cellular collectives operating between the genotype and anatomical phenotype constitute an agential substrate that fundamentally reshapes the evolutionary search process—this is the central claim of L
- Design for an Individual: Connectionist Approaches to the Evolutionary Transitions in Individuality
Evolutionary transitions in individuality (ETIs) require interaction structures among lower-level units that compute non-linearly separable functions — the same class of functions that single-layer Pe
- Self-Improvising Memory: A Perspective on Memories as Agential, Dynamically Reinterpreting Cognitive Glue
Memory's function is not fidelity but salience preservation through active reinterpretation—a claim Levin defends by unifying phenomena from caterpillar-to-butterfly metamorphosis (where training-indu
- Biology, Buddhism, and AI: Care as the Driver of Intelligence
Care—defined as concern for the alleviation of stress (the delta between current and optimal states)—is proposed as the substrate-independent invariant that unifies biology, Buddhist philosophy, and a
- Technological Approach to Mind Everywhere: An Experimentally-Grounded Framework for Understanding Diverse Bodies and Minds
TAME—Technological Approach to Mind Everywhere—formalizes a non-binary, empirically grounded framework for recognizing, comparing, and manipulating cognition across radically diverse substrates, from
- Cellular signaling pathways as plastic, proto-cognitive systems: Implications for biomedicine
- Collective intelligence: A unifying concept for integrating biology across scales and substrates
Collective intelligence, understood as William James' capacity to reach the same goal by different means, operates not only in beehives and ant colonies but as a scale-free organizing principle across