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杏仁核和听觉皮层丘脑输入源中的联合重调谐:内侧膝状体内侧部的感受野可塑性。

Associative retuning in the thalamic source of input to the amygdala and auditory cortex: receptive field plasticity in the medial division of the medial geniculate body.

作者信息

Edeline J M, Weinberger N M

机构信息

Center for the Neurobiology of Learning and Memory, University of California, Irvine 92717.

出版信息

Behav Neurosci. 1992 Feb;106(1):81-105. doi: 10.1037//0735-7044.106.1.81.

Abstract

The medial division of the medial geniculate body (MGm) projects to the lateral amygdala and the upper layer of auditory cortex and develops physiological plasticity rapidly during classical conditioning. The effects of learning on frequency receptive fields (RFs) in the MGm of the guinea pig have been determined. Classical conditioning (tone-footshock), as indexed by rapid development of conditioned bradycardia, produced conditioned stimulus (CS)-frequency specific RF plasticity: increased response at the CS frequency with decreased responses at other frequencies, both immediately and after a 1-hr retention period. Sensitization training produced only general changes in RFs. These findings are considered with reference to both the elicitation of amygdala-mediated, fear-conditioned responses and the mechanism of retrieval of information stored in the auditory cortex during acquisition.

摘要

内侧膝状体的内侧部(MGm)投射到外侧杏仁核和听觉皮层上层,并且在经典条件反射过程中迅速产生生理可塑性。已经确定了学习对豚鼠MGm中频率感受野(RFs)的影响。经典条件反射(音调-足部电击),以条件性心动过缓的快速发展为指标,产生了条件刺激(CS)频率特异性RF可塑性:在CS频率处反应增加,而在其他频率处反应减少,无论是在立即测试时还是在1小时的保留期后。敏感化训练仅产生RFs的一般变化。结合杏仁核介导的恐惧条件反应的引发以及在习得过程中存储在听觉皮层中的信息的检索机制来考虑这些发现。

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