A Pursuit of Quantum Neuroscience’s Principles: Coherence Field Theory and the Physics of Mind

Eric Bond
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引用次数: 2

Abstract

Some basic physics of burgeoning quantum neuroscience is described. Anatomy of the neuron suggests that nonsynaptic mechanisms of signal transmittance occur via electric current acceleration and companion electromagnetic field fluctuation. I have named this mechanism of solution chemistry the ebb effect. Phase-locking between neural structure and electric fields that are emergent from cellular EM field fluctuations, in addition to feedback loops within neural networks, are the probable driver of macroscopic oscillation and flow shapes in the brain. CEMI (conscious electromagnetic information) theory is a promising framework for explaining intentionality and the spectrum of arousal as EM field effects. Relatively low frequency electromagnetic radiation is emitted by the accelerating electric currents of neurons. It is hypothesized that this EM radiation superpositions with molecular structure as it spreads to comprise percepts, the hybrid wavelengths of which form subjective images while wave-length vibrations result in subjective feel. These superposition arrays are termed a coherence field, and in combination with the synchronizing influence of quantum entanglement and electromagnetic fluctuations may constitute much of awareness’ substance. If conclusively verified, coherence field theory should have significance ranging from the treatment of perceptual disorders such as anosognosia to advancing foundational constructs like atomic theory.
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对量子神经科学原理的追求:相干场理论和心灵物理学
描述了新兴的量子神经科学的一些基本物理学。对神经元的解剖表明,信号传递的非突触机制是通过电流加速和伴随的电磁场波动发生的。我把溶液化学的这种机理命名为退潮效应。神经结构和由细胞电磁场波动产生的电场之间的锁相,以及神经网络内的反馈回路,可能是大脑宏观振荡和流动形状的驱动因素。CEMI(意识电磁信息)理论是一个很有前途的框架来解释意向性和觉醒频谱作为电磁场效应。相对低频的电磁辐射是由神经元的加速电流发出的。据推测,这种电磁辐射与分子结构叠加,因为它传播到包括感知,其混合波长形成主观图像,而波长振动导致主观感觉。这些叠加阵列被称为相干场,并与量子纠缠和电磁波动的同步影响相结合,可能构成意识的大部分物质。如果得到最终验证,相干场理论将具有重要意义,从治疗诸如病感失认症之类的感知障碍到推进诸如原子理论之类的基础结构。
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