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[电刺激家兔非特异性和特异性丘脑核团对皮层电位空间同步性的影响]

[Effect of electric stimulation of non-specific and specific thalamic nuclei on the spatial synchronization of cortical potentials in the rabbit].

作者信息

Korinevskaia I V

出版信息

Zh Vyssh Nerv Deiat Im I P Pavlova. 1985 Nov-Dec;35(6):1076-81.

PMID:4090723
Abstract

The effect of low-frequency (1-10 Hz) electrical stimulation of nonspecific n. centralis lateralis and n. centrum medianum and specific thalamic (LGB) nuclei on spatial synchronization of biopotentials of neocortical areas and on the process of learning was studied on rabbits. Electrical stimulation of the non-specific nuclei raised the level of correlation of the cortical potentials, while the LGB stimulation, on the contrary, weakened the spatial synchronization between the potentials of the visual and sensorimotor neocortical areas. On the basis of the obtained data a conclusion is made that stimulation of the non-specific thalamus contributes to a more successful formation of defensive conditioned reflex to light unlike LGB stimulation. It is suggested that a certain specificity of the studied subcortical formations in organization of spatial synchronization of the brain biopotentials and in the process of learning is due to morpho-functional peculiarities of these structures.

摘要

在兔子身上研究了低频(1 - 10赫兹)电刺激非特异性外侧中央核、中央中核以及特异性丘脑(外侧膝状体)核,对新皮层区域生物电位的空间同步性和学习过程的影响。电刺激非特异性核提高了皮层电位的相关性水平,而外侧膝状体的刺激则相反,减弱了视觉和感觉运动新皮层区域电位之间的空间同步性。基于所获得的数据得出结论,与外侧膝状体刺激不同,刺激非特异性丘脑有助于更成功地形成对光的防御性条件反射。有人认为,所研究的皮层下结构在大脑生物电位空间同步组织和学习过程中具有一定特异性,这是由于这些结构的形态功能特性所致。

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引用本文的文献

1
Structural-functional organization of thalamic deficiency.
Neurosci Behav Physiol. 1990 Jan-Feb;20(1):46-50. doi: 10.1007/BF01268112.

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