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Is It Possible to Apply Quantum Mechanics to Explain Consciousness and Brain Functioning?

V. A. Bazhanov

Epistemology & Philosophy of Science 2025 DOI: 10.5840/eps202562460 (opens in new tab)

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AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Key points Argues that quantum-mechanical concepts have not made significant progress in explaining brain mechanisms or consciousness, and that apparent parallels such as nonlocality or wave function reduction are only analogical and do not capture the essential features of either brain or consciousness.

Abstract

The article aims to discuss the problem of applicability of quantum-mechanical concepts to the analysis of the mechanisms of brain and the nature of consciousness. Are these tools sufficient and adequate to solve this problem? We claim that despite numerous attempts made in this direction it is difficult to speak about any significant progress. Although the intersection and active interaction between quantum theory and neuroscience forms a kind of “zone of exchange”, allowing us to claim the formation of “quantum neurophysics”, physicalism and reductionism, actually imposed by quantum mechanics, allow us to discuss the nonlocality of neural networks only by analogy with quantum nonlocality. This discussion actually do not touch the underlying machinery of the functionality of these networks, including the processes of their synchronization. Although J. Fodor’s concept of modularity in the context of holism philosophy and ideas of biocultural co-constructivism lead to the idea that it is possible to apply N. Bohr’s complementarity to comprehension of brain functions, but in reality the presence of quantum effects at the level of brain as an integral system is not so obvious. The expression of thought in a word, which means the transformation of a continuous spectrum into a discrete one, only superficially resembles the process of wave function reduction. We can conclude that the boundaries of applicability of quantum-mechanical representations pass through the conceptual space, which does not capture to advance extent the essential features of neither brain, nor consciousness.