Interferential and Energetic Modeling of Consciousness
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| Sprache: | Französisch |
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2026
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| author | Ben Mabrouk, Adel |
| author_facet | Ben Mabrouk, Adel |
| contents | <p><span lang="fr-TN">This study presents a unified dynamic model of consciousness based on the interaction between neuronal oscillations, mnemonic organization, and energetic constraints of the brain–body system.</span></p> <p><span lang="fr-TN">Building on a previous mathematical framework (<a title="Mathematical and Conceptual Modeling of Human Memory and Consciousness" href="https://zenodo.org/records/18929132">Link</a>) in which consciousness was described as a function of global memory, physiological brain capacity, and psychological sensitivity, the present work introduces a detailed dynamical formulation of the internal processes governing the mnemonic field. Memory is conceptualized as a global oscillatory field structured by interference patterns among distributed neuronal activations, rather than as a static storage system.</span></p> <p><span lang="fr-TN">Within this framework, consciousness is interpreted as the transient stabilization of a coherent global pattern emerging from this oscillatory field. The model integrates three core components: (i) an oscillatory memory field characterized by power, phase synchronization, and phase–amplitude coupling; (ii) a consciousness function linking this field to the brain’s integrative capacity and system vulnerability; and (iii) an energy regulation mechanism describing the dynamic coupling between cerebral metabolic demand and bodily energy supply.</span></p> <p><span lang="fr-TN">A central principle is proposed: stable consciousness emerges when oscillatory coherence reaches a sufficient level and is sustainably supported by available energetic resources. Numerical simulations illustrate distinct cognitive regimes—stable, flexible, and fragmented—associated with specific patterns of synchronization and energy consumption.</span></p> <p><span lang="fr-TN">The framework is consistent with contemporary findings in neuroscience, including oscillatory coordination, neuroenergetics, and large-scale integration theories. It provides a unified perspective linking neuronal dynamics, memory organization, and metabolic regulation, and generates empirically testable predictions regarding the relationships between cognitive coherence, oscillatory synchronization, and energy constraints.</span></p> <p><span lang="fr-TN">This work contributes to the development of integrative and dynamical models of consciousness at the intersection of neuroscience, complex systems theory, and philosophy of mind.</span></p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19191185 |
| institution | Zenodo |
| language | fra |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Interferential and Energetic Modeling of Consciousness Ben Mabrouk, Adel Memory Memory Consolidation Memory, Episodic Memory/classification Consciousness Philosophy Contemporary philosophy philosophie of mind Applied mathematics Mathematical model Models, Neurological neural oscillations brain energy interference global memory <p><span lang="fr-TN">This study presents a unified dynamic model of consciousness based on the interaction between neuronal oscillations, mnemonic organization, and energetic constraints of the brain–body system.</span></p> <p><span lang="fr-TN">Building on a previous mathematical framework (<a title="Mathematical and Conceptual Modeling of Human Memory and Consciousness" href="https://zenodo.org/records/18929132">Link</a>) in which consciousness was described as a function of global memory, physiological brain capacity, and psychological sensitivity, the present work introduces a detailed dynamical formulation of the internal processes governing the mnemonic field. Memory is conceptualized as a global oscillatory field structured by interference patterns among distributed neuronal activations, rather than as a static storage system.</span></p> <p><span lang="fr-TN">Within this framework, consciousness is interpreted as the transient stabilization of a coherent global pattern emerging from this oscillatory field. The model integrates three core components: (i) an oscillatory memory field characterized by power, phase synchronization, and phase–amplitude coupling; (ii) a consciousness function linking this field to the brain’s integrative capacity and system vulnerability; and (iii) an energy regulation mechanism describing the dynamic coupling between cerebral metabolic demand and bodily energy supply.</span></p> <p><span lang="fr-TN">A central principle is proposed: stable consciousness emerges when oscillatory coherence reaches a sufficient level and is sustainably supported by available energetic resources. Numerical simulations illustrate distinct cognitive regimes—stable, flexible, and fragmented—associated with specific patterns of synchronization and energy consumption.</span></p> <p><span lang="fr-TN">The framework is consistent with contemporary findings in neuroscience, including oscillatory coordination, neuroenergetics, and large-scale integration theories. It provides a unified perspective linking neuronal dynamics, memory organization, and metabolic regulation, and generates empirically testable predictions regarding the relationships between cognitive coherence, oscillatory synchronization, and energy constraints.</span></p> <p><span lang="fr-TN">This work contributes to the development of integrative and dynamical models of consciousness at the intersection of neuroscience, complex systems theory, and philosophy of mind.</span></p> |
| title | Interferential and Energetic Modeling of Consciousness |
| topic | Memory Memory Consolidation Memory, Episodic Memory/classification Consciousness Philosophy Contemporary philosophy philosophie of mind Applied mathematics Mathematical model Models, Neurological neural oscillations brain energy interference global memory |
| url | https://doi.org/10.5281/zenodo.19191185 |