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在放射状臂迷宫延迟反应过程中,丘脑 - 皮质 - 纹状体回路对工作记忆起支持作用。

Thalamic-cortical-striatal circuitry subserves working memory during delayed responding on a radial arm maze.

作者信息

Floresco S B, Braaksma D N, Phillips A G

机构信息

Department of Psychology, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4.

出版信息

J Neurosci. 1999 Dec 15;19(24):11061-71. doi: 10.1523/JNEUROSCI.19-24-11061.1999.

Abstract

The medial dorsal nuclei of the thalamus (MDNt), the prefrontal cortex, and the ventral striatum form an interconnected neural circuit that may subserve certain types of working memory. The present series of experiments investigated functional interactions between these brain regions in rats during the performance of delayed and nondelayed spatially cued radial-arm maze tasks. In Experiment 1, transient inactivation of the MDNt by a bilateral injection of lidocaine selectively disrupted performance on a delayed task but not on a nondelayed random foraging version of the radial arm maze task. In Experiment 2, asymmetrical lidocaine injections into the MDNt on one side of the brain and the prefrontal cortex on the other transiently disconnected these two brain regions and significantly impaired foraging during the delayed task. Similarly, disconnections between the prefrontal cortex and the nucleus accumbens also disrupted foraging on this task, whereas disconnections between the MDNt and the nucleus accumbens had no effect. These data suggest that serial transmission of information among the MDNt, the prefrontal cortex, and the nucleus accumbens is required when trial-unique, short-term spatial memory is used to guide prospective search behavior. The results are discussed with respect to a distributed neural network linking limbic, thalamic, cortical, and striatal regions, which mediates executive functions of working memory.

摘要

丘脑内侧背核(MDNt)、前额叶皮层和腹侧纹状体形成一个相互连接的神经回路,可能支持某些类型的工作记忆。本系列实验研究了大鼠在执行延迟和非延迟空间线索放射状臂迷宫任务期间,这些脑区之间的功能相互作用。在实验1中,通过双侧注射利多卡因对MDNt进行短暂失活,选择性地破坏了延迟任务的表现,但对放射状臂迷宫任务的非延迟随机觅食版本没有影响。在实验2中,向大脑一侧的MDNt和另一侧的前额叶皮层不对称注射利多卡因,暂时断开了这两个脑区的连接,并显著损害了延迟任务期间的觅食行为。同样,前额叶皮层和伏隔核之间的断开连接也破坏了该任务的觅食行为,而MDNt和伏隔核之间的断开连接则没有影响。这些数据表明,当使用试验独特的短期空间记忆来指导前瞻性搜索行为时,MDNt、前额叶皮层和伏隔核之间需要串行信息传递。本文将结合一个连接边缘系统、丘脑、皮层和纹状体区域的分布式神经网络来讨论这些结果,该网络介导工作记忆的执行功能。

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