Low-Frequency Oscillations for Nonlocal Neuronal Coupling in Shared Intentionality Before and After Birth: Toward the Origin of Perception

Igor Val Danilov
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Abstract

The theoretical study observes literature to understand whether or not low-frequency oscillations can simultaneously alter the excitability of neurons from peripheral nervous subsystems in different individuals to provide Shared Intentionality in recipients (e.g., fetuses and newborns) and what are the attributes of ecological context for Shared Intentionality. To grasp the perception of objects during environmental learning at the onset of cognition, a fetus needs exogenous factors that could stimulate her nervous system to choose the relevant sensory stimulus. Low-frequency brain oscillations can cause the nonlocal coupling of neurons in peripheral and central nervous subsystems that provide subliminal perception. An external low-frequency oscillator and the proximity of individuals can stimulate the coordination of their heart rates and modulate neuronal excitability. External low-frequency oscillations can increase the cognitive performance of the subjects. The characteristics of this pulsed low-frequency field are oscillations with 400 and 700 nm wavelengths alternately with the pulsed frequency ranging from 1 to 1.6 Hz. This theoretical work contributes to knowledge about nonlocal neuronal coupling in different organisms that can appear due to low-frequency oscillations. The significance of the article is that it explains the neurophysiological processes occurring during Shared Intentionality - one of the central issues in understanding the cognitive development of young children, as the conventional view in cognitive sciences argues. The article's impact is a proposal of the universal mechanism of nonlocal neuronal coupling in shaping the embryonal nervous system in animals of all species, which opens new directions for research on the origin of perception of objects.
出生前后共享意向性中非局部神经元耦合的低频振荡:感知的起源
理论研究观察文献,以了解低频振荡是否可以同时改变不同个体周围神经子系统神经元的兴奋性,从而为受体(如胎儿和新生儿)提供共享意向性,以及共享意向性的生态环境属性是什么。胎儿在认知开始的环境学习过程中,为了掌握对物体的感知,需要外源性因素刺激其神经系统选择相关的感觉刺激。低频脑振荡可引起提供阈下知觉的外周和中枢神经子系统神经元的非局部耦合。外部低频振荡器和个体的接近可以刺激他们心率的协调和调节神经元的兴奋性。外部低频振荡可以提高被试的认知能力。该脉冲低频场的特点是脉冲频率在1 ~ 1.6 Hz范围内,以400和700 nm波长交替振荡。这一理论工作有助于了解不同生物体中可能由于低频振荡而出现的非局部神经元耦合。这篇文章的意义在于,它解释了在共同意向性中发生的神经生理过程——正如认知科学的传统观点所认为的那样,这是理解幼儿认知发展的核心问题之一。这篇文章的影响是提出了非局部神经元耦合在所有物种动物胚胎神经系统形成中的普遍机制,为物体感知起源的研究开辟了新的方向。
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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