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大脑电活动非线性动力学的自适应调节。

Adaptive regulation of the nonlinear dynamics of electrical activity of the brain.

作者信息

Derzhiruk L P, Panchekha A P, Derzhiruk E A

机构信息

B. I. Verkin Low-Temperature Physical-Technical Institute, Ukraine.

出版信息

Neurosci Behav Physiol. 1998 Jul-Aug;28(4):366-75. doi: 10.1007/BF02464789.

Abstract

A programmable system was used to provide contingent reinforcement of EEG cycles corresponding to a selected criterion in a dynamic regime. Use of automated reinforcing stimulation of emotionally positive zones of the hypothalamus led to a significant increase in the number of cycles with the characteristics specified by the dynamic regime within the dominant EEG frequency bands. This effect lasted for some time after withdrawal of reinforcing stimulation, and then died down gradually. These changes in the EEG activity structure did not occur in conditions of nonassociated hypothalamic stimulation. Pseudoreinforced background EEG cycles showed complex nonlinear dynamics with competitive interactions between processes in which the large dimensionality of the attractor was difficult to interpret because of indeterminacy in the trends of the dominant process. In contingent hypothalamic stimulation, the form of the correlation integral changed towards a predominance of a single nonlinear process determining all the activity recorded. In fact, a single dominant nonlinear process was formed, which became responsible for the entire dynamics of the system with concordance of its internal structure.

摘要

在动态状态下,使用可编程系统对符合选定标准的脑电图周期进行偶然强化。对下丘脑情绪积极区域进行自动强化刺激,导致在主导脑电图频段内具有动态状态所指定特征的周期数量显著增加。这种效应在强化刺激撤除后持续一段时间,然后逐渐消失。在非关联下丘脑刺激的情况下,脑电图活动结构不会发生这些变化。伪强化背景脑电图周期显示出复杂的非线性动力学,过程之间存在竞争相互作用,由于主导过程趋势的不确定性,吸引子的高维性难以解释。在偶然下丘脑刺激中,相关积分的形式向单一非线性过程占主导的方向变化,该单一非线性过程决定了所记录的所有活动。实际上,形成了一个单一的主导非线性过程,它负责系统的整个动力学,并与其内部结构一致。

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