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场还是放电?比较尖峰编码与电磁场假说。

Fields or firings? Comparing the spike code and the electromagnetic field hypothesis.

作者信息

Hunt Tam, Jones Mostyn

机构信息

Department of Psychological and Brain Sciences, University of California, Santa Barbara, CA, United States.

Formerly of Washington and Jefferson College, Washington, PA, United States.

出版信息

Front Psychol. 2023 Jul 20;14:1029715. doi: 10.3389/fpsyg.2023.1029715. eCollection 2023.

Abstract

Where is consciousness? Neurobiological theories of consciousness look primarily to synaptic firing and "spike codes" as the physical substrate of consciousness, although the specific mechanisms of consciousness remain unknown. Synaptic firing results from electrochemical processes in neuron axons and dendrites. All neurons also produce electromagnetic (EM) fields due to various mechanisms, including the electric potential created by transmembrane ion flows, known as "local field potentials," but there are also more meso-scale and macro-scale EM fields present in the brain. The functional role of these EM fields has long been a source of debate. We suggest that these fields, in both their local and global forms, may be the primary seat of consciousness, working as a gestalt with synaptic firing and other aspects of neuroanatomy to produce the marvelous complexity of minds. We call this assertion the "electromagnetic field hypothesis." The neuroanatomy of the brain produces the local and global EM fields but these fields are not identical with the anatomy of the brain. These fields are produced by, but not identical with, the brain, in the same manner that twigs and leaves are produced by a tree's branches and trunk but are not the same as the branches and trunk. As such, the EM fields represent the more granular, both spatially and temporally, aspects of the brain's structure and functioning than the neuroanatomy of the brain. The brain's various EM fields seem to be more sensitive to small changes than the neuroanatomy of the brain. We discuss issues with the spike code approach as well as the various lines of evidence supporting our argument that the brain's EM fields may be the primary seat of consciousness. This evidence (which occupies most of the paper) suggests that oscillating neural EM fields may make firing in neural circuits oscillate, and these oscillating circuits may help unify and guide conscious cognition.

摘要

意识位于何处?意识的神经生物学理论主要将突触放电和“尖峰编码”视为意识的物理基础,尽管意识的具体机制仍然未知。突触放电是由神经元轴突和树突中的电化学过程引起的。由于各种机制,包括跨膜离子流产生的电势(即“局部场电位”),所有神经元也会产生电磁场,但大脑中也存在更多中尺度和大尺度的电磁场。这些电磁场的功能作用长期以来一直是争论的焦点。我们认为,这些局部和全局形式的电磁场可能是意识的主要所在,与突触放电及神经解剖学的其他方面共同构成一个整体,从而产生心智的奇妙复杂性。我们将这一论断称为“电磁场假说”。大脑的神经解剖结构产生局部和全局电磁场,但这些场与大脑的解剖结构并不相同。这些场由大脑产生,但与大脑不同,就如同树枝和树叶由树干和树枝产生,但与树干和树枝并不相同一样。因此,与大脑的神经解剖结构相比,电磁场在空间和时间上代表了大脑结构和功能更精细的方面。大脑的各种电磁场似乎比大脑的神经解剖结构对微小变化更敏感。我们讨论了尖峰编码方法存在的问题,以及支持我们观点(即大脑的电磁场可能是意识的主要所在)的各种证据。这些证据(本文大部分篇幅都在阐述)表明,振荡的神经电磁场可能使神经回路中的放电产生振荡,而这些振荡回路可能有助于统一和引导有意识的认知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6614/10400444/1c3c378b3f87/fpsyg-14-1029715-g001.jpg

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