Deacon Robert M J, Bannerman David M, Kirby Brian P, Croucher Adam, Rawlins J Nicholas P
Department of Experimental Psychology, University of Oxford, South Parks Road, UK.
Behav Brain Res. 2002 Jun 15;133(1):57-68. doi: 10.1016/s0166-4328(01)00451-x.
Mice received cytotoxic lesions which selectively removed all of the hippocampus and dentate gyrus except the most ventral portions. They were impaired on both spontaneous and rewarded discrete-trial alternation in T-mazes. Acquisition of reference memory for the location of a hidden platform in the Morris water maze was impaired in lesioned mice. On an elevated Y-maze reference memory task, in which only one arm was rewarded, lesioned mice showed no evidence of learning. In a Lashley III maze task, however, where maze rotation demonstrated that control performance was independent of distal spatial cues, acquisition in the lesioned mice was unimpaired. Control levels of continuous spontaneous alternation in a Y-maze were too low to reveal a hippocampal deficit. A small impairment in acquisition of a multiple-trial passive avoidance task was seen in lesioned mice, despite a small but significant increase in reactivity to the footshock. These results are largely consistent with findings in hippocampal lesioned rats on the same or similar tasks, and reflect a major impairment of spatial cognition, with relative sparing of non-spatial task performance.
小鼠接受了细胞毒性损伤,该损伤选择性地移除了除最腹侧部分之外的所有海马体和齿状回。它们在T迷宫中的自发和奖励离散试验交替任务上均表现受损。在莫里斯水迷宫中,损伤小鼠对隐藏平台位置的参考记忆获取受损。在高架Y迷宫参考记忆任务中,只有一个臂给予奖励,损伤小鼠没有学习的迹象。然而,在拉什利三世迷宫任务中,迷宫旋转表明对照小鼠的表现与远端空间线索无关,损伤小鼠的学习不受影响。Y迷宫中连续自发交替的对照水平过低,无法揭示海马体缺陷。尽管对足部电击的反应性有小幅但显著的增加,但损伤小鼠在多次试验被动回避任务的获取上仍有轻微损伤。这些结果在很大程度上与海马体损伤大鼠在相同或类似任务上的发现一致,反映了空间认知的主要损伤,而非空间任务表现相对保留。