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March 19, 2026Open Access

EGESB-G₂ Preprint Series — Paper IV: G₂-Torsional Resonance Imaging: Zero-Field Molecular Medical Imaging and Plasma Confinement Application

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Authors

GBGalliano Brigo

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Overview

Proposes a new imaging technique that uses intrinsic lattice tension for molecular imaging, indicating significant advancements in plasma confinement applications.

Key Points

  • The aim is to introduce G₂-Torsional Resonance Imaging as a novel medical imaging method that bypasses traditional magnetic fields.
  • Developing G₂-Torsional Resonance Imaging leveraging lattice tension instead of external magnetic fields.
  • Addressing unresolved open problems that affect quantitative predictions.
  • Utilizing a heterogeneous 448-bit register architecture for real-time applications.
  • Demonstrated potential for high-entropy systems in real-time applications.
  • Proposed theoretical extensions for local metric decoupling.
  • Indicated the advantages of using entanglement substrate for improved imaging.

Cite This Study

Galliano Brigo (2026) studied this question.

synapsesocial.com/papers/69bb938e496e729e629818bdhttps://doi.org/10.5281/zenodo.19067608
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