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HARM 6.3 — Heald Adaptive Regenerative Matrix: Adaptive Wound-Healing Systems Engineering Study

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Zenodo2026-05-07 更新2026-05-26 收录
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This archive presents the final complete engineering simulation and evidence package for HARM 6.3 (Heald Adaptive Regenerative Matrix), a conceptual adaptive wound-healing platform integrating hydrogel biomaterials, timed electrochemical oxygen generation, pulsed oxygen cycling, bioelectric stimulation, impedance and temperature monitoring, antimicrobial chemistry, and phase-aware therapy control. The package contains:- engineering plausibility simulations,- calibrated reduced-order models,- Monte Carlo uncertainty analysis,- adaptive healing acceleration simulations,- laboratory-mirror validation outputs,- healing trajectory comparisons,- oxygen delivery simulations,- ROS and thermal safety proxy analysis,- figures,- CSV datasets,- metadata,- and supporting documentation. HARM 6.3 evolved through iterative refinement from speculative conceptual exploration toward a biologically-informed, clinically streamlined, and manufacturable wound-care platform focused on chronic hypoxic wound environments such as diabetic foot ulcers. The project emphasizes systems engineering, adaptive oxygen timing, bioelectric migration stimulation, translational realism, and phase-aware regenerative support rather than speculative regeneration claims. This package is intended for engineering plausibility exploration, simulation documentation, and scientific discussion only. It is not clinical proof, FDA validation, GLP toxicology evidence, or medical advice. Real-world validation would require bench testing, oxygen diffusion measurements, hydrogel mechanical validation, cytotoxicity testing, animal wound models, regulatory review, and controlled clinical trials. Author:Abraham Joseph Heald Generated:2026

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2026-05-07
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