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[Changes in functional connections between adjacent and distant neurons of the motor cortex in the cat during elaboration of an electrodefensive reflexes].

作者信息

Galashina A G, Bogdanov A V

出版信息

Zh Vyssh Nerv Deiat Im I P Pavlova. 1984 May-Jun;34(3):487-94.

PMID:6475300
Abstract

Dynamic reorganization of functional connections between neurones was observed in the motor cortex of cats in the process of electrodefensive conditioning. At a stable conditioned reflex, an increase of number of functional connections was observed more expressed between the neurones of distant microareas (within the range of 450 mcm investigated). In the process of conditioning sometimes one and the same neurone did not change its network properties within its own microarea but became noticeably activated in relation to the neurones of other microareas. The results obtained confirm the suggestion about a multilevel structure of neuronal integration in the process of learning, the first level consisting of consolidation of neighbouring neurones in the microarea, the second one consisting in consolidation of neurones of neighbouring microareas.

摘要

相似文献

1
[Changes in functional connections between adjacent and distant neurons of the motor cortex in the cat during elaboration of an electrodefensive reflexes].
Zh Vyssh Nerv Deiat Im I P Pavlova. 1984 May-Jun;34(3):487-94.
2
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引用本文的文献

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Types of correlations of neuronal firing patterns in the visual and sensorimotor areas of the rabbit neocortex.兔新皮质视觉和感觉运动区神经元放电模式的相关性类型。
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Functional interneuronal connections in the motor cortex of alert and anesthetized cats.
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Features of the systemic organization of cortical neurons with different forms of the manifestation of a conditioned reflex to time.具有对时间的条件反射不同表现形式的皮质神经元的系统组织特征。
Neurosci Behav Physiol. 1990 May-Jun;20(3):236-43. doi: 10.1007/BF01195461.
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Dynamics of synchronization in the functioning of neurons of the new cortex and hippocampus during learning before and after the administration of nootropic agents and narcotics.在使用益智药和麻醉品前后学习过程中,新皮层和海马体神经元功能同步的动态变化。
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