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学习过程中膜突触修饰的时空组织以及皮层电位慢振荡的拓扑图。

Temporospatial organization of membrane-synaptic modifications and topograms of slow oscillations in cortical potentials during learning.

作者信息

Kozhedub R G, Knipst I N

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.

出版信息

Neurosci Behav Physiol. 1997 Jan-Feb;27(1):38-48. doi: 10.1007/BF02463044.

Abstract

This report concerns the important question of the specificity of the organization of the different stages of formation of a conditioned reflex, considered at the level of membrane-synaptic modifications, which are compared with changes in the spatial organization of slow cortical potentials. A defined sequence of involvement of cellular mechanisms is demonstrated during learning, which may be responsible for various features of the spatial organization of slow cortical potentials. Changes in cellular excitability in cortical neurons are probably connected with oscillations in the overall level of instantaneous topograms and, thus, with the general level of spatial synchronization; the involvement of excitatory and inhibitory synaptic connections (with efficiencies corresponding to different stages in the reflex) may determine the formation of the relief seen in topograms. Parameters at both levels depend on the effects of the hypothalamus on the cortex.

摘要

本报告涉及条件反射形成不同阶段组织特异性的重要问题,该问题是在膜 - 突触修饰水平上进行考量的,并与慢皮层电位的空间组织变化相比较。研究表明,学习过程中细胞机制参与存在特定顺序,这可能是慢皮层电位空间组织各种特征的成因。皮层神经元细胞兴奋性的变化可能与瞬时拓扑图总体水平的振荡相关,进而与空间同步的总体水平相关;兴奋性和抑制性突触连接(其效率与反射的不同阶段相对应)的参与可能决定拓扑图中所见图形的形成。两个层面的参数均取决于下丘脑对皮层的影响。

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