paper:doi-10-1016-j-biosystems-2018-09-012The need for a concept of shape homeostasis
Original abstract (expand)
A major step forward for developmental biology will be accomplished when someone figures out how to extend the concept of homeostasis to apply to shapes, in the sense of geometric properties of cells, tissues and organs. I propose that the biggest obstacle to this forward step is that biological researchers are not yet familiar with the properties of tensor variables, as compared with scalars. This key difference is that tensor properties can and usually do have different amounts in different directions, whereas scalar properties cannot vary with direction. Examples of tensor variables include stress, strain, curvature, permeability, and stiffness. Examples of scalar properties include chemical concentrations, osmotic pressure, hydrostatic pressure, adhesiveness and electrical voltage. Even D'Arcy Thompson treated mechanical tension (which is the classic example of a tensor variable) as if it were a scalar constant. This greatly reduced the number of geometric shapes that he could explain as being directly produced by forces. For example, in order to generate cylinders, surface contractions need to be twice as strong in one direction as compared with the perpendicular direction. Unless surface contractions vary with direction, only spheres can be generated. Another example of not distinguishing tensors from scalars is the use of suction pipettes to measure stresses of cell surfaces (for example, during cytokinesis). This method of measurement inescapably lumps together directional components of two different tensors (tension and stiffness) as if they were one scalar. Yet another obstacle was that certain scientists argued persuasively, but mistakenly, that attractor basins were evidence of minimization of thermodynamic free energy. Chemical concentrations have no special ability to generate gradients. Neither do any other scalar variables. As will be discussed below, repeated local equilibration of any quantitative variable will generate at least as good a gradient as diffusion can. It is misguided to think of scalars as being in any sense more quantitative than tensors. In fact, tensor variables can convey more information than chemical gradients, often faster and with less vulnerability to disturbance.
Related work— refs + corpus + external arXiv
Cited / in-corpus / arXiv badges show which signals surfaced each row. Multi-source rows weighted higher.
- The scaling of goals via homeostasis: an evolutionary simulation, experiment and analysisJohanna Bischof, Jennifer V. LaPalme, and Michael Levin Leo Pio-Lopez2022≈ 69%
- ≈ 68%
- The Origin of Life in the Light of EvolutionTom A. Williams, Laura Eme, Johann Peter Gogarten, Patricia Sanchez-Baracaldo, Anja Spang, Frank O. Aylward, Michael Travisano, Paula V. Welander, Julie A. Huber, Vaughn S. Cooper, Paul E. Turner, Timothy W. Lyons, Andrew D. Ellington, Shelley D. Copley, Eugene V. Koonin, Michael Lynch Bet\"ul Ka\c{c}ar2026≈ 67%
- ≈ 67%
- Global Life Patterns: A Methodology for Designing a Personal Global LifeTaichi Isaku, Satoshi Nishina, Takashi Iba Ko Matsuzuka2013≈ 67%
- ≈ 67%
- Microelectronic Morphogenesis: Progress towards Artificial OrganismsDaniil Karnaushenko, Minshen Zhu and Oliver G. Schmidt John S. McCaskill2024≈ 67%
- 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≈ 67%
- ≈ 67%
- ≈ 67%
- ≈ 66%
- ≈ 66%
- From homeostasis to resource sharing: Biologically and economically aligned multi-objective multi-agent gridworld-based AI safety benchmarksRoland Pihlakas2025≈ 66%
- Engineering morphogenesis of cell clusters with differentiable programmingFrancesco Mottes, Ariana-Dalia Vlad, Michael P. Brenner, Alma dal Co Ramya Deshpande2025≈ 66%
- ≈ 66%
- A Selection Criterion for Patterns in Reaction-Diffusion SystemsTatiana T. Marquez-Lago and Pablo Padilla2014≈ 66%
- ≈ 65%
- ≈ 65%
- ≈ 64%
- Towards a theory of conceptual design for softwarein corpus2015≈ 64%
- ≈ 63%
- Darwin's agential materials: evolutionary implications of multiscale competency in developmental biologyin corpus2023≈ 63%
- ≈ 62%
- The biogenic approach to cognitionin corpus2005≈ 62%
- ≈ 62%
- ≈ 62%
- ≈ 61%
- Collective intelligence: A unifying concept for integrating biology across scales and substratesin corpus2024≈ 61%
- ≈ 61%
- The computational boundary of a 'self': developmental bioelectricity drives multicellularity and scale-free cognitionin corpus2019≈ 61%
Similar preprints — Semantic Scholar
Cited by (5)
- 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
- Stress sharing as cognitive glue for collective intelligences: A computational model of stress as a coordinator for morphogenesis
Stress sharing between cells accelerates collective morphogenesis and expands individual cells' cognitive light cone, as demonstrated in a multiscale agent-based computational model of embryogenesis p
- 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
- Cognitive glues are shared models of relative scarcities: the economics of collective intelligence
Levin and Lyons argue that the price system in market economies is not merely a resource-allocation device but the canonical instantiation of what they term a *cognitive glue* — a coordinating afforda