Leonard B W, Amaral D G, Squire L R, Zola-Morgan S
Center for Behavioral Neuroscience, University at Stony Brook, New York 11794-2575, USA.
J Neurosci. 1995 Aug;15(8):5637-59. doi: 10.1523/JNEUROSCI.15-08-05637.1995.
Performance on five behavioral tasks was assessed post-operatively in Macaca fascicularis monkeys prepared with bilateral lesions of the entorhinal cortex (E group). Three of the tasks were also readministered 9-14 months after surgery. Initial learning of the delayed nonmatching-to-sample (DNMS) task was impaired in the E animals relative to unoperated control monkeys. On the delay portion of DNMS, the performance of E animals was nearly at control levels at short delays (up to 60 sec) but was impaired at 10 min and 40 min retention intervals. On the retest of DNMS, the E animals performed normally at all retention intervals. The E animals were unimpaired on the four other memory tasks. Neuroanatomical studies revealed a significant transverse expansion of the terminal field of the perirhinal cortical projection in the CA1 region of the hippocampus. Compared to unlesioned, anatomical control monkeys, the transverse length of the perirhinal terminal field in CA1 increased approximately 70% in the E monkeys. Although this was a striking morphological alteration, it is not known whether the sprouting of this projection influenced the behavioral recovery. The results of these studies suggest that the entorhinal cortex may normally participate in the learning and performance of tasks that are dependent on the medial temporal lobe memory system. However, recovery of normal DNMS performance demonstrates that the entorhinal cortex is not, by itself, essential for learning and performance of such tasks.
在接受双侧内嗅皮质损伤的食蟹猴(E组)术后评估了其在五项行为任务上的表现。其中三项任务在术后9 - 14个月也重新进行了测试。与未手术的对照猴相比,E组动物在延迟非匹配样本(DNMS)任务的初始学习中受损。在DNMS的延迟部分,E组动物在短延迟(长达60秒)时的表现接近对照水平,但在10分钟和40分钟的保持间隔时受损。在DNMS的重新测试中,E组动物在所有保持间隔时表现正常。E组动物在其他四项记忆任务上未受损。神经解剖学研究显示海马CA1区嗅周皮质投射终末场有明显的横向扩展。与未损伤的解剖学对照猴相比,E组猴CA1区嗅周终末场的横向长度增加了约70%。尽管这是一个显著的形态学改变,但尚不清楚这种投射的出芽是否影响了行为恢复。这些研究结果表明,内嗅皮质可能正常参与依赖内侧颞叶记忆系统的任务的学习和表现。然而,DNMS表现恢复正常表明,内嗅皮质本身对于此类任务的学习和表现并非必不可少。