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May 19, 20260 citationsOpen Access

Sarcopenia Mechanics and Mitochondrial Coherence: A Statistical Physics Framework for the 3D→2D Geometric Phase Transition in Skeletal Muscle

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RAREGIVALDO DE ALMEIDA

Key Result

A mitochondrial Axial Coherence Factor below 0.65 triggers a deterministic geometric phase transition causing sarcopenia (p=1.26×10⁻⁷), with exercise identified as the key intervention.

Key Points

  • This research aims to explore the mechanics of sarcopenia through a statistical physics framework, revealing its connection to mitochondrial coherence.
  • Developed a statistical physics framework to analyze skeletal muscle architecture and its changes during aging.
  • Identified mitochondrial Axial Coherence Factor (ACF) thresholds and their impact on muscle mass.
  • Analyzed data from multi-ethnic cohorts across three continents to support the findings.
  • ACF critical threshold determined to be 0.65, impacting intracellular muscle balance.
  • Bioenergetic deficit leads to a shift from muscle anabolism to catabolic thinning.
  • Exercise was found to be the only effective universal intervention for combating sarcopenia.

Structured PICO

P
Population
Skeletal muscle in aging (sarcopenia)
I
Intervention
Exercise
O
Outcome
Mitochondrial visitation frequency fv and elevation of mitochondrial Axial Coherence Factor (ACF)

A statistical physics framework identifies sarcopenia as a deterministic geometric phase transition triggered when mitochondrial Axial Coherence Factor falls below 0.65, with exercise being the only universal intervention to elevate mitochondrial visitation frequency.

Main Result

p-value: p=1.26×10⁻⁷

Abstract

Skeletal muscle is a highly organized three-dimensional contractile system characterized by a precise helical arrangement of actomyosin filaments and strict sarcomere lattice spacing of 2. 2 µm. Maintaining this volumetrically dense architecture against gravity and continuous external loading demands an uninterrupted supply of adenosine triphosphate (ATP) for protein synthesis and myofilament stability. We present a statistical physics and systems engineering framework identifying the progressive loss of skeletal muscle mass in aging — sarcopenia — as a deterministic geometric phase transition from a three-dimensional creation mode configuration to a two-dimensional maintenance mode configuration. When the mitochondrial Axial Coherence Factor (ACF) falls below the first-principles universal threshold, collective molecular torque catalysis collapses. The critical threshold ACF = 0. 65 is derived geometrically from the 3D random close-packing percolation threshold (pc = 0. 4120 1, 2) and the Jacobi ellipsoid rotational stability limit (Rmin = 2/3 3), yielding ACF = (pc × Rmin) ^ (1/3) = 0. 650033 (Δ = 0. 0051%, z = 0. 013σ) 4. Ten alternative derivation paths tested and closed. The resulting bioenergetic deficit shifts the intracellular balance from volumetric muscle anabolism to catabolic cross-sectional thinning. The independent evidence base spans multi-ethnic convergent cohort studies across three continents (Singapore, United Kingdom, Jamaica) 5, 6, anchored by Nobel Prize-confirmed ATP synthase rotary mechanism 7, 8 and convergent mitochondrial dysfunction evidence from 16 independent research groups across 4 continents spanning 45+ years. All computations verified against NIST CODATA 2022 13. Fisher's combined probability method: MS37 biological domains alone σ = 5. 27 (χ² = 44. 22, df = 6, p = 1. 26×10⁻⁷). Full series cumulative (df=50): σ = 10. 23. Exercise is identified as the only universal intervention capable of elevating mitochondrial visitation frequency fv at both molecular and tissue scale simultaneously — the only mechanism proven effective for sarcopenia universally.

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Cite This Study

REGIVALDO DE ALMEIDA (2026) studied Sarcopenia. Exercise was evaluated on Mitochondrial Axial Coherence Factor (ACF) threshold (p=1.26×10⁻⁷). A mitochondrial Axial Coherence Factor below 0.65 triggers a deterministic geometric phase transition causing sarcopenia (p=1.26×10⁻⁷), with exercise identified as the key intervention.

synapsesocial.com/papers/6a0bfe08166b51b53d37951fhttps://doi.org/10.5281/zenodo.20258557
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