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Spatial learning with unilateral and bilateral hippocampal networks.

机译:具有单侧和双侧海马网络的空间学习。

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摘要

Abstract This study investigated the ability of animals to learn both reference memory and delayed matching-to-place variants of the watermaze after large lesions of the hippocampus that deliberately spared only small remnants of the structure. Groups were created that had differing blocks of residual tissue in the septal pole of the hippocampus (15% or 30% of total volume), located either unilaterally (30 or 50% on one side, 0% on the other) or bilaterally (30 + 30%). These groups were capable of learning the reference memory task, as indexed by normal spatially focused searching in a probe trial, but their rate of learning was slower than that of sham-lesioned rats. An impairment in the rate of learning was also seen in the delayed match-to-place task, where one-trial memory was observed only at the shortest (5 s) intertrial interval in the lesioned groups with the largest sparing. In both tasks performance was proportional to the volume of hippocampus spared and independent of whether this was unilaterally or bilaterally located. The findings are compatible with distributed processing accounts of hippocampal memory storage.
机译:摘要这项研究调查了动物在故意遗留少量结构残留的海马体大损伤后学习水迷宫的参考记忆和延迟匹配匹配变体的能力。创建的组在海马隔中极具有不同的残余组织块(占总体积的15%或30%),位于单侧(一侧为30或50%,另一侧为0%)或双侧(30个) + 30%)。这些组能够学习参考记忆任务,这是通过在探针试验中通过常规的空间聚焦搜索来索引的,但是它们的学习速度比假手术的大鼠要慢。在延迟的“按地点就班”任务中也观察到学习速度的降低,在这种情况下,只有在保留次数最多的病变组中,最短间隔(5 s)的间隔才观察到一次试验记忆。在这两个任务中,表现均与备用海马的数量成正比,而与这是单侧还是双侧无关。该发现与海马记忆存储的分布式处理帐户兼容。

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