首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A within-subjects, within-task demonstration of intact spatial reference memory and impaired spatial working memory in glutamate receptor-A-deficient mice.
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A within-subjects, within-task demonstration of intact spatial reference memory and impaired spatial working memory in glutamate receptor-A-deficient mice.

机译:谷氨酸受体A缺陷小鼠完整空间参考记忆和受损空间工作记忆的受试者内部,任务内演示。

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Gene-targeted mice lacking the AMPA receptor subunit glutamate receptor-A (GluRA) (GluR1) and wild-type controls were compared on a radial-maze task in which the same three of six arms were always baited, but in which the rewards of milk were not replaced within a trial. This procedure allowed not only a within-subjects but also a within-trials assessment of both spatial working memory (WM) and reference memory (RM) in GluRA-/- mice, using identical spatial cues. In experiment 1, the GluRA-/- mice made more WM and RM errors during task acquisition. However, separate groups of GluRA-/- and wild-type mice (experiment 2) acquired a purely RM version of the task at a similar rate, using a paradigm with which it was not possible to make WM errors (doors prevented mice from re-entering an arm that they had already visited on that trial). In contrast, mice with hippocampal lesions were dramatically impaired. These results are consistent with the possibility that the WM impairment in the GluRA-/- mice during experiment 1 produced interference that disrupted RM acquisition. A WM component was therefore introduced after RM acquisition in experiment 2 (i.e., the mice were no longer prevented from re-entering a previously visited arm). The GluRA-/- mice now made considerably more WM errors than did wild-type mice, but simultaneously, RM was only mildly and transiently impaired. These experiments provide additional evidence of a selective spatial WM deficit coexisting with intact spatial RM acquisition in GluRA-/- mice, suggesting that different neuronal mechanisms within the hippocampus may support these different kinds of information processing.
机译:将缺乏AMPA受体亚单位谷氨酸受体A(GluRA)(GluR1)和野生型对照的基因靶向小鼠在径向迷宫任务中进行了比较,在该任务中,六个臂中的三个臂总是被引诱,但是试验中未更换牛奶。该程序不仅可以在受试者内部进行试验,而且还可以使用相同的空间线索对GluRA-/-小鼠的空间工作记忆(WM)和参考记忆(RM)进行试验内评估。在实验1中,GluRA-/-小鼠在任务获取过程中犯了更多的WM和RM错误。但是,使用GluRA-/-和野生型小鼠的单独组(实验2)以不可能发生WM错误的范例(门无法阻止小鼠重新获得)以相似的速率获得了纯RM版本的任务。 -输入他们在该审判中已经拜访过的手臂)。相反,患有海马损伤的小鼠受到严重损害。这些结果与实验1中GluRA-/-小鼠的WM损伤产生干扰RM采集的干扰的可能性一致。因此,在实验2中获得RM后,引入了WM组件(即,不再阻止小鼠重新进入先前访问过的手臂)。现在,GluRA-/-小鼠比野生型小鼠产生更多的WM错误,但同时,RM仅受到轻度和暂时性损伤。这些实验提供了额外的证据,表明在GluRA-/-小鼠中选择性空间WM缺乏与完整空间RM并存,表明海马内不同的神经元机制可能支持这些不同种类的信息处理。

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