A proposed mechanism for mind-brain interaction using extended Bohmian quantum mechanics in Avicenna's monotheistic perspective.
Mohammad Jamali, Mehdi Golshani, Yousef Jamali
Heliyon July 1, 2019 DOI: 10.1016/j.heliyon.2019.e02130 (opens in new tab) via PubMed
Summary
AI-generated from the abstractA model and mechanism for mind-brain interaction is proposed, combining extended Bohmian quantum mechanics with Avicenna's philosophical ideas. The model shows that mind and mental states can affect brain activity without violating physical laws. It is a mathematical and descriptive model offering a causal account of mind's effect on matter. The model respects realistic philosophical constraints, aligns with Libet-style experimental results and parapsychological data, and is derived from a modified non-unitary Schrödinger equation obtained via second quantization. Three methods for extending Bohmian QM through path integral formalism are presented, with numerical simulations of two-slits experiment trajectories distinguishing them, and one method chosen as the basis for the mind-brain model.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Keywords | Avicenna Bohmian quantum mechanics Mind brain interaction Modified schrödinger equation Neuroscience |
| Key finding | Proposes that mind can affect brain activity through a modified quantum potential derived from an extended Bohmian quantum mechanics, without violating physical laws. |
Abstract
In quantum approaches to consciousness, the authors try to propose a model and mechanism for the mind-brain interaction using modern physics and some quantum concepts which do not exist in the classical physics. The independent effect of mind on the brain has been one of the challenging issues in the history of science and philosophy. In some recent mind-brain interaction models, the direct influence of mind on matter is either not accepted (as in Stapp's model) or not clear, and there have not been any clear mechanism for it (as in Penrose-Hameroff's model or in Eccles's model). In this manuscript we propose a model and mechanism for mind's effect on the matter using an extended Bohmian quantum mechanics and Avicenna's ideas. We show that mind and mental states can affect brain's activity without any violation of physical laws. This is a mathematical and descriptive model which shows the possibility of providing a causal model for mind's effect on matter. It is shown that this model guarantees the realistic philosophical constraints and respects the laws of nature. In addition, it is shown that it is in agreement with the Libet style experimental results and parapsychological data. To propose this model, we obtained a modified (non-unitary) Schrödinger equation via second quantization method which affects the particle through a modified quantum potential and a new term in the continuity equation. At the second quantized level, which is equivalent to quantum field theory level (QFT), we can use the path integral formalism of Feynman. We show that there are three methods to extend Bohmian QM via path integral formalism, which has different interpretations. By numerical simulation of trajectories in the two-slits experiment, we show their differences and choose one of these methods for our mind-brain model which can be the basis for explaining some phenomena which are not possible to explain in the standard Bohmian QM.