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Linoleic acid: Is this the key that unlocks the quantum brain? Insights linking broken symmetries in molecular biology, mood disorders and personalistic emergentism

机译:亚油酸:这是解锁量子大脑的钥匙吗?将分子生物学,情绪障碍和个人紧急情况中破碎的对称性联系起来的见解

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摘要

In this paper we present a mechanistic model that integrates subneuronal structures, namely ion channels, membrane fatty acids, lipid rafts, G proteins and the cytoskeleton in a dynamic system that is finely tuned in a healthy brain. We also argue that subtle changes in the composition of the membrane's fatty acids may lead to down-stream effects causing dysregulation of the membrane, cytoskeleton and their interface. Such exquisite sensitivity to minor changes is known to occur in physical systems undergoing phase transitions, the simplest and most studied of them is the so-called Ising model, which exhibits a phase transition at a finite temperature between an ordered and disordered state in 2- or 3-dimensional space. We propose this model in the context of neuronal dynamics and further hypothesize that it may involve quantum degrees of freedom dependent upon variation in membrane domains associated with ion channels or microtubules. Finally, we provide a link between these physical characteristics of the dynamical mechanism to psychiatric disorders such as major depression and antidepressant action.
机译:在本文中,我们提出了一个机械模型,该模型在健康大脑中经过微调的动态系统中整合了神经元以下结构,即离子通道,膜脂肪酸,脂筏,G蛋白和细胞骨架。我们还认为,膜中脂肪酸组成的细微变化可能导致下游效应,导致膜,细胞骨架及其界面失调。这种对微小变化的灵敏性是发生在经历相变的物理系统中的,最简单,研究最多的是所谓的伊辛模型,该模型在有限温度下在2阶有序和无序状态之间表现出相变。或3维空间。我们在神经元动力学的背景下提出了该模型,并进一步假设它可能涉及取决于与离子通道或微管相关的膜结构域变化的量子自由度。最后,我们在动力学机制的这些物理特征与精神疾病(例如重度抑郁症和抗抑郁药)之间提供了联系。

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