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条件性联想学习与海马体系统。

Conditional associative learning and the hippocampal system.

作者信息

Sziklas V, Lebel S, Petrides M

机构信息

Department of Neurology and Neurosurgery, McGill University, Montreal, Quebec, Canada.

出版信息

Hippocampus. 1998;8(2):131-7. doi: 10.1002/(SICI)1098-1063(1998)8:2<131::AID-HIPO5>3.0.CO;2-O.

Abstract

Rats with lesions of the fornix, the dorsal hippocampus, or a control operation were trained on a spatial-visual conditional associative learning task in which they had to learn to associate particular locations with specific visual stimuli. Animals with damage of the fornix were able to learn the task at a rate comparable to that of the control animals, but the performance of the hippocampal rats was significantly impaired in comparison with that of both the control and the fornix groups. In a second experiment, lesions to the fornix or the dorsal hippocampus significantly impaired performance on a spatial working memory task, the eight-arm radial maze. These findings suggest that the interaction between the hippocampus and subcortical structures via the fornix may be critical only for certain types of spatial learning and memory.

摘要

对穹窿、背侧海马体有损伤的大鼠或进行了对照手术的大鼠进行空间视觉条件联想学习任务训练,在该任务中它们必须学会将特定位置与特定视觉刺激联系起来。穹窿受损的动物能够以与对照动物相当的速度学习该任务,但与对照组和穹窿组相比,海马体受损大鼠的表现明显受损。在第二个实验中,穹窿或背侧海马体的损伤显著损害了空间工作记忆任务(八臂放射状迷宫)的表现。这些发现表明,海马体与通过穹窿的皮质下结构之间的相互作用可能仅对某些类型的空间学习和记忆至关重要。

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