Sloan Hazel L, Good Mark, Dunnett Stephen B
Brain Repair Group, School of Biosciences, Cardiff University, Wales, UK.
Behav Brain Res. 2006 Jul 15;171(1):116-26. doi: 10.1016/j.bbr.2006.03.030. Epub 2006 May 4.
The hippocampus and prefrontal cortex have both been implicated in various aspects of the acquisition, retention and performance of delayed matching to position (DMTP) tasks in the rat, although their precise respective contributions remain unclear. In the present study, rats were trained preoperatively on DMTP before receiving excitotoxic bilateral lesions of either the entire hippocampus or the medial prefrontal cortex. Rats with lesions of the prefrontal cortex exhibited a significant delay-dependent impairment on retention of the DMTP task, whereas hippocampal lesions were without effect. Rats were also exposed to a switch in the contingencies to a 'non-matching' rule, as an analogue of switching between decision rules in the human Wisconsin Card Sorting Test, in which human patients with prefrontal damage are impaired. Both lesion groups acquired the new contingency at control levels, providing no evidence towards a role for either of these areas in this type of rule-switching. The same rats were also assessed in a spatial reference memory task in the water maze, which revealed an impairment in escape latencies and path length that was specific to the hippocampal lesions. The results corroborate previous evidence that the hippocampus is not necessary for at least some aspects of working memory performance in the DMTP task, whereas the delay-dependent deficit in the prefrontal lesion group support this task as a potentially powerful tool for assessing the cognitive changes associated with frontal damage and repair.
海马体和前额叶皮质都与大鼠延迟位置匹配(DMTP)任务的获取、保持和执行的各个方面有关,尽管它们各自的确切作用仍不清楚。在本研究中,大鼠在接受整个海马体或内侧前额叶皮质的兴奋性毒性双侧损伤之前,先接受DMTP术前训练。前额叶皮质损伤的大鼠在DMTP任务的保持上表现出显著的延迟依赖性损伤,而海马体损伤则没有影响。大鼠还面临 contingencies 切换到“不匹配”规则的情况,作为人类威斯康星卡片分类测试中决策规则切换的类似情况,前额叶损伤的人类患者在该测试中会受损。两个损伤组均以对照水平获得新的 contingencies,没有证据表明这两个区域中的任何一个在这种类型的规则切换中起作用。同样的大鼠也在水迷宫中的空间参考记忆任务中进行了评估,结果显示海马体损伤的大鼠在逃避潜伏期和路径长度上存在损伤。这些结果证实了先前的证据,即海马体对于DMTP任务中工作记忆表现的至少某些方面不是必需的,而前额叶损伤组中与延迟相关的缺陷支持将该任务作为评估与额叶损伤和修复相关的认知变化的潜在有力工具。