Cryo-Coupling: Geometric Cancer Intervention via Phase-Locked Descent of the 25×N Ladder

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Main Author: Dunn, James E.
Format: Recurso digital
Published: Zenodo 2026
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author Dunn, James E.
author_facet Dunn, James E.
contents Proposes a non-destructive cancer intervention framework grounded in the geometric composition equation. Rather than fighting cancer by destroying tissue, the protocol couples to the cancer's coupling state and walks it back down the T1 = 25×N ladder. Two-pronged mechanism: (1) localized mild hypothermia (28-32°C, not ablative) reduces coupling density d, targeting the impaction (Da) domain; (2) GLP-1 receptor agonist compound delivered locally during cooling induces Z-DNA formation at overactive cancer promoters, creating targeted transcriptional deadlock in the radiation (Dum) domain. Combined: phase-locked descent stepping 25×12 = 300 ms per treatment cycle. Tissue survives; coupling state changes. Six falsifiable predictions including quantized T1 steps, synergistic cryo-GLP-1 response, and fat-tissue negative control. GCT Research Protocol II.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19223643
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Cryo-Coupling: Geometric Cancer Intervention via Phase-Locked Descent of the 25×N Ladder
Dunn, James E.
cryotherapy
cancer
geometric composition
GLP-1
T1 MRI
coupling equation
Z-DNA
cryo-coupling
Proposes a non-destructive cancer intervention framework grounded in the geometric composition equation. Rather than fighting cancer by destroying tissue, the protocol couples to the cancer's coupling state and walks it back down the T1 = 25×N ladder. Two-pronged mechanism: (1) localized mild hypothermia (28-32°C, not ablative) reduces coupling density d, targeting the impaction (Da) domain; (2) GLP-1 receptor agonist compound delivered locally during cooling induces Z-DNA formation at overactive cancer promoters, creating targeted transcriptional deadlock in the radiation (Dum) domain. Combined: phase-locked descent stepping 25×12 = 300 ms per treatment cycle. Tissue survives; coupling state changes. Six falsifiable predictions including quantized T1 steps, synergistic cryo-GLP-1 response, and fat-tissue negative control. GCT Research Protocol II.
title Cryo-Coupling: Geometric Cancer Intervention via Phase-Locked Descent of the 25×N Ladder
topic cryotherapy
cancer
geometric composition
GLP-1
T1 MRI
coupling equation
Z-DNA
cryo-coupling
url https://doi.org/10.5281/zenodo.19223643