Extreme Neurodynamic Regimes Reveal Meta–Noetic Dissociations

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Auteur principal: Langell, Robin
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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author Langell, Robin
author_facet Langell, Robin
contents <p>This work presents Noetic Diffusion Theory (NDT) as a dynamical framework for analyzing neural activity across extreme neurodynamic regimes, including anesthesia, sleep, psychedelics, epilepsy, psychosis, and neurodegeneration. Neural time series are embedded in a Meta–Noetic Phase Space (MNPS), extended via stratification and second-order flow analysis using the Meta–Noetic Jacobian (MNJ). Applying a unified pipeline to multiple EEG and fMRI datasets, the study reveals regime-specific dissociations and principled null results, highlighting both the utility and limits of dynamical state-space approaches to consciousness research.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19207307
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Extreme Neurodynamic Regimes Reveal Meta–Noetic Dissociations
Langell, Robin
Consciousness
Consciousness/classification
Neurology
Neurology
Clinical neurology
Noetic Diffusion Theory
Neurosciences
Computational neuroscience
Cognitive Neuroscience
Cognitive neuroscience
Geometry
Cognition
Cognition Disorders/pathology
Cognition Disorders/psychology
<p>This work presents Noetic Diffusion Theory (NDT) as a dynamical framework for analyzing neural activity across extreme neurodynamic regimes, including anesthesia, sleep, psychedelics, epilepsy, psychosis, and neurodegeneration. Neural time series are embedded in a Meta–Noetic Phase Space (MNPS), extended via stratification and second-order flow analysis using the Meta–Noetic Jacobian (MNJ). Applying a unified pipeline to multiple EEG and fMRI datasets, the study reveals regime-specific dissociations and principled null results, highlighting both the utility and limits of dynamical state-space approaches to consciousness research.</p>
title Extreme Neurodynamic Regimes Reveal Meta–Noetic Dissociations
topic Consciousness
Consciousness/classification
Neurology
Neurology
Clinical neurology
Noetic Diffusion Theory
Neurosciences
Computational neuroscience
Cognitive Neuroscience
Cognitive neuroscience
Geometry
Cognition
Cognition Disorders/pathology
Cognition Disorders/psychology
url https://doi.org/10.5281/zenodo.19207307