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获得味觉厌恶记忆的杏仁核回路与消除该记忆的回路不同。

The amygdalar circuit that acquires taste aversion memory differs from the circuit that extinguishes it.

作者信息

Bahar Amir, Samuel Anat, Hazvi Shoshi, Dudai Yadin

机构信息

Department of Neurobiology, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Eur J Neurosci. 2003 Apr;17(7):1527-30. doi: 10.1046/j.1460-9568.2003.02551.x.

Abstract

Experimental extinction is the decline in the frequency or intensity of a conditioned behaviour resulting from repetitive performance of the behaviour in the absence of the unconditioned stimulus or reinforcer (Pavlov, 1927). Ample behavioural evidence indicates that experimental extinction does not reflect unlearning of the original trace, but rather a relearning process, in which the new association of the conditioned stimulus with the absence of the original reinforcer comes to control behaviour (Rescorla, 1996). If experimental extinction is indeed learning rather than forgetting, are the neuronal circuits that subserve learning and extinction identical? We address this question by double dissociation analysis of the role of the central (CeA) and the basolateral (BLA) nuclei of the rat's amygdala in the acquisition and extinction, respectively, of conditioned taste aversion (CTA). Whereas local blockade of protein synthesis or beta-adrenergic receptors in the CeA blocks acquisition but not extinction of CTA, a similar intervention in the BLA blocks extinction but not acquisition. Hence, the amygdalar circuit that acquires taste aversion memory differs functionally from the circuit that extinguishes it.

摘要

实验性消退是指在没有无条件刺激或强化物的情况下,由于对条件行为的重复执行,导致该条件行为的频率或强度下降(巴甫洛夫,1927年)。大量行为证据表明,实验性消退并不反映对原始痕迹的遗忘,而是一个重新学习的过程,在这个过程中,条件刺激与原始强化物缺失的新关联开始控制行为(雷斯克拉,1996年)。如果实验性消退确实是学习而非遗忘,那么支持学习和消退的神经回路是否相同呢?我们通过对大鼠杏仁核的中央核(CeA)和基底外侧核(BLA)在条件性味觉厌恶(CTA)的习得和消退过程中所起作用的双重解离分析来解决这个问题。虽然CeA中蛋白质合成或β-肾上腺素能受体的局部阻断会阻断CTA的习得但不会阻断其消退,但对BLA进行类似干预则会阻断消退但不会阻断习得。因此,获得味觉厌恶记忆的杏仁核回路在功能上与消除该记忆的回路不同。

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