POTENTIATION OF TISSUE REGENERATION AND CESSATION OF HYPERCATABOLIC SYNDROME IN COMBAT POLYTRAUMA: BIOPHYSICAL AND NEUROENDOCRINE JUSTIFICATION OF THE SYNERGY OF THE MSPM MATRIX AND NASP PROTOCOL (IMMANENT THERAPY®)
· Severe combat polytrauma triggers a devastating hypercatabolic cascade, traditionally met with high-dose protein interventions that risk exacerbating organ failure and cellular starvation. This foundational work—developed within the research framework of Patented MT (pmtstructure.com)—introduces a paradigm-shifting biophysical model: Coordinated Bio-Stacking, integrating a structurally modified Molecularly Structured Protein Matrix (MSPM) with the Neuroacoustic Stimulation Protocol (NASP) under the umbrella of Immanent Therapy®. · Challenging conventional nutritional dogmas, the author substantiates how pre-structured filamentous low-dose substrates bypass steric and enzymatic bottlenecks (Zero-ATP Waste), while neuroacoustic synchronisation modulates autonomic tone (HRV). Together, they drive the biosystem into the Thermodynamic Corridor of Adaptive Resilience, shifting priorities from emergency stress survival to rapid somatic regeneration and tissue healing. Complete with a practical bedside protocol and objective verification markers, this framework offers a novel, non-toxic bio-regulatory strategy for critical care and military medicine. --------------------- Supplementary File Note (Clinical Checklist) Naumenko_2026_Combat_Polytrauma_Appendix_Clinical_Protocol: This supplementary document provides a practical, bedside-ready operational checklist for medical staff. It translates the theoretical biophysical principles of the MSPM-NASP protocol into an actionable daily schedule, detailing exact micro-dosages (5–7 g), time intervals, staff guidelines, and objective laboratory verification markers (UUN, prealbumin, and wound planimetry) for managing combat polytrauma and hypercatabolism.
Authors
- Volodymyr Naumenko (ORCID: https://orcid.org/0009-0000-3965-5205)
Institutions
- National Academy of Sciences of Ukraine (UA)
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-16
- DOI
- https://doi.org/10.5281/zenodo.22792738
- Primary Topic
- Trauma, Hemostasis, Coagulopathy, Resuscitation
- Type
- article
- Field-Weighted Citation Impact
- 0.00