Journal of Multiscale Neuroscience

R. Poznanski
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Abstract

This paper proposes biophysical principles for why geometric holonomic effects through the geometric vector potential are sentient when harmonized by quantized magnetic vector potential in phase-space. These biophysical principles are based on molecular level electromagnetic resonances in partially holistic molecules where nonintegrated information acts as the consciousness process’s conduit—using the informational structure of physical feelings as a transition into subjectivity. The transformation of internal energies from potential to kinetic as ‘concealed’ motion may measure the causal capacity required to bridge causality for conscious experience. Conformational transitions produce bond-breaking, resulting in boundary conditions and limiting the molecular wavefunction to a partially holistic molecular environment with molecular holonomic effects. The van der Waals energy increases protein conformational activity (re-arrangement of bonds), causing energy transfer and information in protein-protein interactions across the cerebral cortex through the energy transduction process. Energy transitions predetermine molecular level electromagnetic resonances in aromatic residues of amino acids. The energy sharing between various nested molecular level electromagnetic resonances interacting with the intermolecular adhesion of London forces at the nexus between phospholipids and the lipophilic proteins has a key role in constraining the release of energy resulting in a vast array of information-based action through negentropic entanglement. Such information structure, passing from the objectivity of holonomic effects stemming from molecular level electromagnetic resonances, has an inherent ambiguity since meaning cannot be related to context, which constitutes preconscious experienceability. The transition from potentiality to actuality where Coulombic force is expressed as a smear of possible experiences where carriers of evanescent meanings instantly actualize through intermittent dispersion interactions as conscious experiences and return to potentiality in preconscious experienceabilities.
多尺度神经科学杂志
本文提出了通过几何矢量势的几何完整效应在相空间中被量子化磁矢量势协调时是有感知的生物物理原理。这些生物物理原理是基于部分整体分子中的分子水平电磁共振,其中非整合信息充当了意识过程的管道-使用物理感觉的信息结构作为向主体性的过渡。作为“隐藏”运动的内能从势能到动能的转换,可以衡量为意识经验架起因果关系所需的因果能力。构象转变产生键断裂,导致边界条件,并将分子波函数限制在具有分子完整效应的部分整体分子环境中。范德华能增加蛋白质的构象活性(键的重新排列),通过能量转导过程在大脑皮层的蛋白质-蛋白质相互作用中引起能量传递和信息。能量跃迁预先决定了氨基酸芳香残基的分子水平电磁共振。各种嵌套的分子级电磁共振之间的能量共享与磷脂和亲脂蛋白之间的分子间粘附相互作用,在限制能量释放方面起着关键作用,从而通过负熵纠缠产生大量基于信息的作用。这种信息结构源于分子水平电磁共振的完整效应的客观性,具有固有的模糊性,因为意义不能与构成前意识经验的上下文相关。从潜在性到现实性的转变,库仑力被表达为可能经验的涂抹,转瞬即逝的意义的载体通过间歇性的分散相互作用作为意识经验立即实现,并在前意识经验中返回潜在性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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