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自旋介导意识理论:神经膜核自旋系综和顺磁性氧的可能作用

Spin-mediated consciousness theory: possible roles of neural membrane nuclear spin ensembles and paramagnetic oxygen.

作者信息

Hu Huping, Wu Maoxin

机构信息

Biophysics Consulting Group, 25 Lubber Street, Stony Brook, NY 11790, USA.

出版信息

Med Hypotheses. 2004;63(4):633-46. doi: 10.1016/j.mehy.2004.04.002.

Abstract

A novel theory of consciousness is proposed in this paper. We postulate that consciousness is intrinsically connected to quantum spin since the latter is the origin of quantum effects in both Bohm and Hestenes quantum formulism and a fundamental quantum process associated with the structure of space-time. That is, spin is the "mind-pixel". The unity of mind is achieved by entanglement of the mind-pixels. Applying these ideas to the particular structures and dynamics of the brain, we theorize that human brain works as follows: through action potential modulated nuclear spin interactions and paramagnetic O2/NO driven activations, the nuclear spins inside neural membranes and proteins form various entangled quantum states some of which survive decoherence through quantum Zeno effects or in decoherence-free subspaces and then collapse contextually via irreversible and non-computable means producing consciousness and, in turn, the collective spin dynamics associated with said collapses have effects through spin chemistry on classical neural activities thus influencing the neural networks of the brain. Our proposal calls for extension of associative encoding of neural memories to the dynamical structures of neural membranes and proteins. Thus, according our theory, the nuclear spin ensembles are the "mind-screen" with nuclear spins as its pixels, the neural membranes and proteins are the mind-screen and memory matrices, and the biologically available paramagnetic species such as O2 and NO are pixel-activating agents. Together, they form the neural substrates of consciousness. We also present supporting evidence and make important predictions. We stress that our theory is experimentally verifiable with present technologies. Further, experimental realizations of intra-/inter-molecular nuclear spin coherence and entanglement, macroscopic entanglement of spin ensembles and NMR quantum computation, all in room temperatures, strongly suggest the possibility of a spin-mediated mind.

摘要

本文提出了一种全新的意识理论。我们假定意识与量子自旋存在内在联系,因为在玻姆和赫斯滕斯的量子形式体系中,量子自旋是量子效应的起源,且是与时空结构相关的基本量子过程。也就是说,自旋是“心智像素”。心智的统一是通过心智像素的纠缠实现的。将这些观点应用于大脑的特定结构和动力学,我们推测人类大脑的工作方式如下:通过动作电位调制的核自旋相互作用以及顺磁性的O₂/NO驱动的激活作用,神经膜和蛋白质内部的核自旋形成各种纠缠量子态,其中一些通过量子芝诺效应或在无退相干子空间中避免退相干,然后通过不可逆且不可计算的方式进行情境坍缩,从而产生意识,反过来,与上述坍缩相关的集体自旋动力学通过自旋化学作用对经典神经活动产生影响,进而影响大脑的神经网络。我们的提议要求将神经记忆的关联编码扩展到神经膜和蛋白质的动力学结构。因此,根据我们的理论,核自旋系综是以核自旋为像素的“心智屏幕”,神经膜和蛋白质是心智屏幕和记忆矩阵,而诸如O₂和NO等生物可利用的顺磁性物质是像素激活剂。它们共同构成了意识的神经基础。我们还提供了支持证据并做出了重要预测。我们强调,我们的理论可以用现有技术进行实验验证。此外,在室温下实现分子内/分子间核自旋相干和纠缠、自旋系综的宏观纠缠以及核磁共振量子计算,都有力地表明了自旋介导心智的可能性。

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