Biophysical Optimization of Mitochondrial ATP Synthesis via 670 nm Photonic Lubrication and 432 Hz Acoustic Phase-Locking

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Auteur principal: Marutani, Yuji
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Publié: Zenodo 2026
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author Marutani, Yuji
author_facet Marutani, Yuji
contents <p>This paper proposes a theoretical framework for the enhancement of biological computa-tion and metabolic efficiency by addressing the thermodynamic constraints of mitochondrial F0F1-ATP synthase. We demonstrate that the dynamic viscosity (η) of interfacial water (Exclusion Zone or EZ water) acts as a primary physical bottleneck for the rotational ve-locity of molecular motors. Through the application of 670 nm near-infrared (NIR) light, we hypothesize a non-linear reduction in interfacial viscosity, termed “photonic lubrication,” which accelerates ATP production. Furthermore, we examine the role of 432 Hz acoustic<br>resonance, based on Pythagorean tuning, in stabilizing the hexagonal lattice of EZ water to induce informational coherence. The integration of these parameters within a PDSCA (Plan-Do-Standardize-Check-Act) cybernetic loop provides a pathway toward a biological “phase transition” characterized by minimized entropy and maximized cognitive output.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18142599
institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle Biophysical Optimization of Mitochondrial ATP Synthesis via 670 nm Photonic Lubrication and 432 Hz Acoustic Phase-Locking
Marutani, Yuji
Biophysics
Interfacial Water
Photobiomodulation
ATP Synthase
<p>This paper proposes a theoretical framework for the enhancement of biological computa-tion and metabolic efficiency by addressing the thermodynamic constraints of mitochondrial F0F1-ATP synthase. We demonstrate that the dynamic viscosity (η) of interfacial water (Exclusion Zone or EZ water) acts as a primary physical bottleneck for the rotational ve-locity of molecular motors. Through the application of 670 nm near-infrared (NIR) light, we hypothesize a non-linear reduction in interfacial viscosity, termed “photonic lubrication,” which accelerates ATP production. Furthermore, we examine the role of 432 Hz acoustic<br>resonance, based on Pythagorean tuning, in stabilizing the hexagonal lattice of EZ water to induce informational coherence. The integration of these parameters within a PDSCA (Plan-Do-Standardize-Check-Act) cybernetic loop provides a pathway toward a biological “phase transition” characterized by minimized entropy and maximized cognitive output.</p>
title Biophysical Optimization of Mitochondrial ATP Synthesis via 670 nm Photonic Lubrication and 432 Hz Acoustic Phase-Locking
topic Biophysics
Interfacial Water
Photobiomodulation
ATP Synthase
url https://doi.org/10.5281/zenodo.18142599