Skip to content

(Short Paper18) Verification Mechanisms and System Errors of REM Sleep in the In Vivo QPU Paradigm: A Quantum Infor mation Formulation of Dreams, Sleep Paralysis, and Cellular Carcinogenesis Author: kotoan.gg (Bio-Q

Zenodo (CERN European Organization for Nuclear Research) September 13, 2026 DOI: 10.5281/zenodo.22730842 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Key points Argues that REM sleep is a systems-engineering "Verification process" in which the visual system tracks dream data to confirm recalibration of absolute coordinates reset during non-REM sleep, and proposes that synchronization failures or decoherence in this process lead to jet lag, sleep paralysis, and cellular carcinogenesis in some occupational environments.

Abstract

The phenomenon of “REM (Rapid Eye Movement) sleep,” in which the eyeballs move vigorously despite skeletal muscle relaxation induced by the sleep center, has traditionally been interpreted in conventional neuroscience as a “leakage of random brain activity associated with memory consolidation.” However, from the perspective of the biological Quantum Processing Unit (Bio QPU) theory, this phenomenon is redefined as a highly refined systems engineering “Verification process.” This paper formulates the mechanism by which the visual QPU performs physical tracking on virtual space data (dreams) generated by the central QPU (brain) to confirm whether the absolute coordinates (origin) reset during non-REM sleep have been correctly calibrated. Furthermore, we elucidate the hierarchical debugging mechanism of the sleep cycle, presenting the physical mechanisms (system errors) by which imperfections and decoherence in this synchronization directly lead to jet lag, sleep paralysis, and cellular carcinogenesis in certain occupational environments.