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From the 1 of 17 linked papers with an AI index.

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17 papers

physics.bio-ph2026

Stochastic First-Passage Theory of HIV Viral Rebound Following Latent Reservoir Reactivation

Mesfin Asfaw Taye

The paper formulates HIV viral rebound after latent reservoir reactivation as a stochastic first‑passage problem, modeling plasma viral load as a Poisson shot‑noise process and der…

physics.bio-ph2026

Relativistic PBTE:Biological Proper Time Along the Worldline

Mesfin Asfaw Taye

Biological aging is conventionally indexed by chronological time, yet every organism is a physical system tracing a worldline through spacetime, so the time available to its metabo…

physics.bio-ph2026

Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence

Mesfin Asfaw Taye

Biological theory usually treats time as an external chronological variable against which growth, aging, and ecological change are parametrized. Yet living systems also generate an…

physics.bio-ph2026

A Nonequilibrium Internal-Time Model of Aging: Entropy-Normalized Biological Proper Time and Repair Bifurcations

Mesfin Taye

Chronological age is an incomplete coordinate for aging. Individuals and species sharing the same calendar time can differ substantially in physiological reserve, molecular damage,…

q-bio.OT2026

Biological proper time and entropy-cost invariance in cardiac and respiratory lifespan scaling

Mesfin Taye

Warm-blooded vertebrates accumulate approximately conserved numbers of physiological cycles over a natural lifetime: of order heartbeats and -- breaths. T…

physics.bio-ph2026

Neural Investment as an Entropy-Budget Strategy: A Thermodynamic Derivation of Primate Longevity from the Principle of Biological Time Equivalence

Mesfin Taye

Primates exhibit a robust deviation from canonical allometric scaling: at fixed body mass, their lifespans exceed those of non-primate mammals by factors of two to three. A rhesus…