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Association rules for rat spatial learning: The importance of the hippocampus for binding item identity with item location

机译:大鼠空间学习的关联规则:海马对项目识别与项目位置绑定的重要性

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摘要

Three cohorts of rats with extensive hippocampal lesions received multiple tests to examine the relationships between particular forms of associative learning and an influential account of hippocampal function (the cognitive map hypothesis). Hippocampal lesions spared both the ability to discriminate two different digging media and to discriminate two different room locations in a goo-go task when each location was approached from a single direction. Hippocampal lesions had, however, differential effects on a more complex task (biconditional discrimination) where the correct response was signaled by the presence or absence of specific cues. For all biconditional tasks, digging in one medium (A) was rewarded in the presence of cue C, while digging in medium B was rewarded in the presences of cue D. Such biconditional tasks are “configural” as no individual cue or element predicts the solution (AC+, AD−, BD+, and BC−). When proximal context cues signaled the correct digging choice, biconditional learning was seemingly unaffected by hippocampal lesions. Severe deficits occurred, however, when the correct digging choice was signaled by distal room cues. Also, impaired was the ability to discriminate two locations when each location was approached from two directions. A task demand that predicted those tasks impaired by hippocampal damage was the need to combine specific cues with their relative spatial positions (“structural learning”). This ability makes it possible to distinguish the same cues set in different spatial arrays. Thus, the hippocampus appears necessary for configural discriminations involving structure, discriminations that potentially underlie the creation of cognitive maps.
机译:三组患有广泛海马病变的大鼠接受了多项测试,以检验特定形式的联想学习与影响海马功能的因素之间的关系(认知图假设)。当从单个方向接近每个位置时,海马病变既可以区分两个不同的挖掘介质,又可以区分执行/不执行任务中的两个不同房间位置。然而,海马皮损对更复杂的任务(双条件辨别)具有不同的影响,在该任务中,是否存在特定线索提示正确的反应。对于所有双条件任务,在提示C的存在下,在一种介质(A)中的挖掘是有回报的,而在提示D的存在下,在B介质中的挖掘是有回报的。此类双条件任务是“配置性”的,因为没有单独的提示或元素可以预测解决方案(AC +,AD-,BD +和BC-)。当近端提示提示正确的挖掘选择时,双条件学习似乎不受海马病变的影响。但是,当远端房室提示发出正确的挖掘选择时,就会出现严重缺陷。同样,当从两个方向接近每个位置时,区分两个位置的能力也会受到损害。预测那些因海马体损伤而受损的任务的任务需求是,需要将特定线索与其相对空间位置结合起来(“结构学习”)。这种能力使区分不同空间阵列中的相同线索成为可能。因此,海马看起来对于涉及结构的结构辨别是必要的,这些辨别潜在地构成了认知图的基础。

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