The Cohesion Glyph: A Recursive Framework for Structural Integrity, Rupture, and Renewal in Living and Mechanical Systems
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| Sprache: | Englisch |
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2026
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| _version_ | 1866901745123196928 |
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| author | Gilbert, Dexter |
| author_facet | Gilbert, Dexter |
| contents | <p>This paper presents the Cohesion Glyph, a recursive and multi-scale framework designed<br>to model the lifecycle of structural coherence in both biological and mechanical systems.<br>The framework establishes a set of interlinked operators: the Cohesion Constant,<br>Saturation Point, Lifespan Function, Elasticity Gradient Map, and Recovery Loop. By<br>integrating these elements, the Cohesion Glyph provides a unified logic for growth, rupture,<br>and regeneration, all within a single symbolic topology. Validation is demonstrated through<br>applications in soft robotics and mechanobiology, where the framework supports<br>predictive modeling of failure, adaptive tensioning, and regenerative design. Importantly,<br>the glyph functions as a recursive operator—encoding the logic of coherence across<br>nested scales—and is not intended as a metaphor. This work bridges the divide between<br>living tissues and engineered machines, serving as a canonical reference for systems that<br>are designed to endure, adapt, and heal.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18275116 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Cohesion Glyph: A Recursive Framework for Structural Integrity, Rupture, and Renewal in Living and Mechanical Systems Gilbert, Dexter Physics Physics Mathematical physics Physics/methods Physics/standards Particle physics Quantum physics Theoretical physics Health Physics Ontology Engineering Engineering Electrical engineering, electronic engineering, information engineering Materials engineering Electronic engineering Mechanical engineering Aerospace engineering <p>This paper presents the Cohesion Glyph, a recursive and multi-scale framework designed<br>to model the lifecycle of structural coherence in both biological and mechanical systems.<br>The framework establishes a set of interlinked operators: the Cohesion Constant,<br>Saturation Point, Lifespan Function, Elasticity Gradient Map, and Recovery Loop. By<br>integrating these elements, the Cohesion Glyph provides a unified logic for growth, rupture,<br>and regeneration, all within a single symbolic topology. Validation is demonstrated through<br>applications in soft robotics and mechanobiology, where the framework supports<br>predictive modeling of failure, adaptive tensioning, and regenerative design. Importantly,<br>the glyph functions as a recursive operator—encoding the logic of coherence across<br>nested scales—and is not intended as a metaphor. This work bridges the divide between<br>living tissues and engineered machines, serving as a canonical reference for systems that<br>are designed to endure, adapt, and heal.</p> |
| title | The Cohesion Glyph: A Recursive Framework for Structural Integrity, Rupture, and Renewal in Living and Mechanical Systems |
| topic | Physics Physics Mathematical physics Physics/methods Physics/standards Particle physics Quantum physics Theoretical physics Health Physics Ontology Engineering Engineering Electrical engineering, electronic engineering, information engineering Materials engineering Electronic engineering Mechanical engineering Aerospace engineering |
| url | https://doi.org/10.5281/zenodo.18275116 |