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Effects of discrete kainic acid-induced hippocampal lesions on spatial and contextual learning and memory in rats.

机译:海藻酸引起的离散海马损伤对大鼠空间和情境学习记忆的影响。

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摘要

Substantial information is available concerning the influence of global hippocampal lesions on spatial learning and memory, however the contributions of discrete subregions within the hippocampus to these functions is less well understood. The present investigation utilized kainic acid to bilaterally lesion specific areas of the rat hippocampus. These animals were subsequently tested on a spatial orientation task using a circular water maze, and on an associative/contextual task using passive avoidance conditioning. The results indicate that both the dorsal CA1 and the ventral CA3 subregions play important roles in learning. Specifically, CA1 lesions produced a deficit in the acquisition of the water maze task and a significant memory impairment on the passive avoidance task. CA3 lesions also caused learning deficits in the acquisition of the water maze task, and produced even greater impairments in performance on the passive avoidance task. We conclude that CA1 and CA3 hippocampal subregions each playsignificant roles in the overall integration of information concerning spatial and associative learning.
机译:关于全球海马损伤对空间学习和记忆的影响,可获得大量信息,但是,海马内离散区域对这些功能的贡献尚不甚清楚。本研究利用海藻酸对大鼠海马的双侧病变特定区域。随后使用圆形水迷宫对这些动物进行了空间定向任务测试,并使用了被动回避条件对这些动物进行了关联/上下文任务测试。结果表明,背CA1和腹CA3子区域都在学习中发挥重要作用。具体而言,CA1病变在水迷宫任务的获取中产生缺陷,在被动回避任务中产生显着的记忆障碍。 CA3病变还会在水迷宫任务的获取中导致学习不足,并且在被动回避任务上会造成更大的性能损害。我们得出结论,CA1和CA3海马亚区各自在有关空间和联想学习的信息的整体整合中起着重要作用。

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