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相干场理论对意识模型的贡献:大脑中的电流、电磁场和电磁辐射。

The contribution of coherence field theory to a model of consciousness: electric currents, EM fields, and EM radiation in the brain.

作者信息

Bond Eric

机构信息

Whitman College, Walla Walla, WA, United States.

出版信息

Front Hum Neurosci. 2023 Jan 24;16:1020105. doi: 10.3389/fnhum.2022.1020105. eCollection 2022.

Abstract

A paradigm in neuroscience is developing which views resonance as the phenomenon responsible for consciousness. Much progress is being made in the investigation of how resonance as oscillating flows within the brain's electric field might result in production of mind from matter. But it's mostly unknown how vibrations among features of matter such as nanoscale atomic structures and photonic waves may participate in forming the basic substance of first-person consciousness, meaning percepts such as colors, textures, sounds, thoughts, feelings et cetera. Initial evidence at the leading edge of quantum biology suggests that light and atoms combine to form synchronously resonating structures of contiguous energy which I have termed coherence fields. My hypothesis is that coherence fields as atomic nodes within expanses of integrating photonic waves are the fundamental unit of first-person percepts insofar as they arise from electromagnetic matter. A concept of quantum coherence is formulated based on a new phenomenology of matter's nanoscale properties, and this is shown to tie what we have thus far discovered of neural anatomy into a comprehensive model of how electrical impulses travel through neurons as electron currents driven by coherence at the quantum scale. Transmembrane electric fields generated by ionic currents, synaptic phase regulation, and perhaps further mechanisms have been hypothesized as responsible for local field potentials (LFP) oscillations. Some insights into how emergent, macroscopic waves in the brain's electric field may reciprocally impact LFP propagation to control arousal, attention, and volition are briefly discussed. Activation of neural tissue is closely linked to temperature variation, and it is hypothesized that this is not merely a waste byproduct but constitutes a signature of coherence field modulation, with photonic waves of a primarily infrared spectral range functioning as an interstitial medium of the basic percept field. A variety of possible routes to coherence field modulation are outlined that derive from the mechanisms of electric currents, EM fields, EM radiation, and entanglement. If future experimental designs continue to validate coherence field theory, this could set science on course to resolve the mind/body problem.

摘要

神经科学领域正在形成一种范式,该范式将共振视为意识产生的现象。在研究大脑电场中作为振荡流的共振如何从物质中产生意识方面,正在取得很多进展。但物质特征(如纳米级原子结构和光波)之间的振动如何参与形成第一人称意识的基本物质,即诸如颜色、质地、声音、思想、情感等感知,却大多未知。量子生物学前沿的初步证据表明,光和原子结合形成连续能量的同步共振结构,我将其称为相干场。我的假设是,作为整合光波区域内原子节点的相干场是第一人称感知的基本单位,只要这些感知源自电磁物质。基于物质纳米级特性的新现象学,形成了量子相干的概念,这表明我们迄今发现的神经解剖学知识可以纳入一个综合模型,该模型解释了电脉冲如何作为由量子尺度的相干驱动的电子流在神经元中传播。离子电流、突触相位调节以及可能的其他机制产生的跨膜电场被认为是局部场电位(LFP)振荡的原因。简要讨论了关于大脑电场中涌现的宏观波如何相互影响LFP传播以控制觉醒、注意力和意志的一些见解。神经组织的激活与温度变化密切相关,据推测,这不仅是一种无用的副产品,而且构成了相干场调制的特征,主要为红外光谱范围的光波作为基本感知场的间隙介质。概述了从电流、电磁场、电磁辐射和纠缠机制中得出的各种可能的相干场调制途径。如果未来的实验设计继续验证相干场理论,这可能会使科学走上解决身心问题的道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e783/9903675/961ea29e7957/fnhum-16-1020105-g0001.jpg

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