A Bidirectional Quantum-Electrodynamic Model of Consciousness: Testing the Consciousness Identity Factor via Anomalous Hodgkin-Huxley Waveform Deviations

Cambridge.Org (forthcoming)
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Abstract

Current physicalist models of consciousness, including Global Neuronal Workspace Theory and Integrated Information Theory, fail to resolve the unicity paradox inherent in perfect structural duplication. To resolve this limitation, I introduce a hybrid Quantum-Electrodynamic framework centered on a non-copyable Consciousness Identity Factor (CIF). I postulate that the CIF relies on localized Ultra-Quantum Genomic Particles that couple bidirectionally with the brain's macroscopic electromagnetic field topology. This paper formalizes the bidirectional resonance equations linking the quantum density matrix to Maxwellian field tensors. Crucially, I present a falsifiable empirical parameter: a predicted 0.5 to 3.0 mV anomalous current injection that violates classical Hodgkin-Huxley electrodynamics during conscious states. I outline a rigorous experimental methodology utilizing dual somato-dendritic patch-clamp electrophysiology, high-density magnetoencephalography, and differential chemical ablation via Propofol and Xenon gas to isolate this quantum-biological interface.

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