Biofeedback and the Revoking of Qualia
PhilPapers (PhilPapers Foundation) 2026 DOI: 10.13140/rg.2.2.21455.04005/1 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Theoretical or philosophical paper with supporting empirical studies Qualitative Peer reviewed |
|---|---|
| Interventions | EEG state discrimination training biofeedback |
| Keywords | Qualia Consciousness Empirical research Interoception Biofeedback Generalization Neurofeedback Phenomenon Cognitive psychology Cognitive science Unconscious mind Subconscious Space punctuation Operationalization Interpretability Implicit learning Psychic |
| Key points | Argues that the boundary between physical processes and their phenomenal correlates is dynamic, directionally asymmetric, and modifiable through learning, based on findings from EEG alpha discrimination studies. |
Abstract
Biofeedback is commonly understood as a clinical procedure for treating psychological disorders. This paper argues that it constitutes something more fundamental: a novel empirical instrument for studying the relationship between conscious and unconscious processes in the brain. A decade-long research program in EEG state discrimination training has suggested an empirically grounded account of the regulatory conditions under which physical processes acquire phenomenal correlates—narrowing the hard problem of consciousness by constraining the space of viable solutions. Drawing on Ramachandran and Hirstein’s (1997) Three Laws of Qualia, the paper further argues that biofeedback revokes the irrevocability of unified qualitative experiences across the timescale of learning. Psychopathology is reframed as the maladaptive terminal differentiation of chunked experience; biofeedback as its systematic un-chunking, operating through sensory substitution mechanisms that restore phenomenal access to subthreshold physiological states. Three empirical studies of EEG alpha discrimination provide the framework’s foundation. Their findings—psychophysical scaling of discrimination accuracy, asymmetric generalization between control and awareness training, and a temporal phenomenon termed behavioral inertia—demonstrate that the boundary between physical processes and their phenomenal correlates is dynamic, directionally asymmetric, and modifiable through learning rather than fixed and categorical. Any adequate solution to the hard problem must therefore explain how and why this boundary has these properties. This concept—the mind-brain barrier, a functional regulatory network maintaining the physical-phenomenal boundary—does not solve the hard problem but transforms it, converting a monolithic philosophical mystery into a progressively narrowing set of testable empirical questions.