Role of retroactive interference in the spatial memory of normal rats and rats with hippocampal lesions.

L E Jarrard, D G Elmes
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引用次数: 29

Abstract

The importance of retroactive interference (RI) in memory for spatial locations was studied by using a 12-arm radial maze and a standard RI paradigm. Animals in the RI condition first learned to choose 4 of the 12 arms, followed by training to a second set of 4 arms. In the control condition for interference, rats learned the first set of arms but were not trained to approach the second set. Thereafter, animals in each interference condition were assigned to groups (hippocampal, cortical control, unoperated control), the operations were carried out, and then all animals were tested for retention of the set of arms learned first. Contrary to predictions of the cognitive map theory, O'Keefe & Nadel, 1978), RI was found in control animals. The severe memory deficit found in hippocampals was not influenced by the interference variable. In addition to impaired performance early in relearning, rats with hippocampal lesions continued to make many errors throughout the 10 wk of testing, including choices to unbaited arms and repeated entries into baited arms. However, hippocampals eventually learned not to reenter unbaited arms. These data indicate a deficit in the selection and utilization of sets of responses and are interpreted as implicating the hippocampus in retrieval processes.

回溯性干扰在正常大鼠和海马病变大鼠空间记忆中的作用。
采用12臂径向迷宫和标准回溯干扰范式,研究了回溯干扰在空间位置记忆中的重要性。在RI条件下的动物首先学会选择12个手臂中的4个,然后训练第二组4个手臂。在干扰的控制条件下,大鼠学习了第一组手臂,但没有训练过如何接近第二组手臂。然后,将各干扰条件下的动物分组(海马组、皮质组、未操作组),进行操作,然后测试所有动物对先学习的一组手臂的保留情况。与认知地图理论(O'Keefe & Nadel, 1978)的预测相反,RI在对照动物中被发现。海马严重的记忆缺陷不受干扰变量的影响。除了再学习早期的表现受损外,海马损伤的大鼠在整个10周的测试中继续犯许多错误,包括选择无诱饵的手臂和重复进入诱饵的手臂。然而,海马体最终学会了不重新进入没有诱饵的手臂。这些数据表明,在选择和利用的反应集的缺陷,并被解释为暗示海马体在检索过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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