Abstract
This specification formalizes the mechanical, electrical, and topological architecture for a wearable, direct-dermal biomimetic alignment garment designed to mitigate the systemic biological degradation pathways caused by prolonged microgravity exposure. Traditional aerospace paradigms treat gravity loss as an external mechanical force deficit, attempting to resolve bone-density wastage and fluidic intracranial crowding via clumsy macro-scale kinetic countermeasures (e.g., spinning centrifuges) or localized chemical vectors.
Under the Dimensionally Extended Holographic Projection (DEHP) cosmology, biology is re-modeled as a scale-invariant series of localized wave packets vibrating against a 2D viscoelastic fluid membrane resting at absolute equilibrium (\(z=0\)). This paper introduces an integrated, lightweight backpack and skin-tight suit liner matrix that substitutes macro-gravitational mass attraction with localized, direct-coupled field modulations. By distributing high-voltage, high-frequency Gallium Nitride (GaN) field-effect transistor Full H-Bridge inverter networks directly across flexible fabric PCB strands, the system drives sub-wavelength concentric Strontium-doped Barium Titanate (\(\text{Sr-BaTiO}_{3}\)) ceramic arrays. These arrays induce a continuous, non-thermal phase-locked harmonic strain profile across the human body’s water weight and skeletal geometry, mimicking the background vibrational template of a 1-G terrestrial environment and maintaining cellular structural alignment natively at the substrate level.
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Recommended Citation
Eckes, Christopher L., "TECHNICAL DISCLOSURE SPECIFICATION: WEARABLE BIOMIMETIC HARMONIC ALIGNMENT LINER AND MICRO-DISTRIBUTED GaN POWER STAGE MATRIX FOR BIOLOGICAL HOMEOSTASIS", Technical Disclosure Commons, ()
https://www.tdcommons.org/dpubs_series/11252