The Universal Resonance Model (URM) establishes a mathematical framework defining disease as a dynamical phenomenon governed by instability, coupling, and timing across physiological subsystems.
This paper defines the mathematical kernel of the Universal Resonance Model (URM), a dynamical systems framework that conceptualizes disease as instability, coupling, and transition across interacting physiological subsystems. The kernel provides a renderer-independent, text-first specification of core state variables, operators, and stability conditions, enabling reproducible implementation across clinical research, computational modelling, and AI-based decision support. This document serves as the formal reference layer for applied URM work, including clinical metrics, geometric templates, and AI integration frameworks, while intentionally separating theory from implementation.
Anita Domargård (Thu,) conducted a other in Chronic disease and oscillatory multi-system conditions. Universal Resonance Model (URM) was evaluated. The Universal Resonance Model (URM) establishes a mathematical framework defining disease as a dynamical phenomenon governed by instability, coupling, and timing across physiological subsystems.