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全身性NMDA或毒蕈碱拮抗剂作用下水迷宫获取的详细行为分析:非空间预训练可消除空间学习缺陷。

Detailed behavioral analysis of water maze acquisition under systemic NMDA or muscarinic antagonism: nonspatial pretraining eliminates spatial learning deficits.

作者信息

Saucier D, Hargreaves E L, Boon F, Vanderwolf C H, Cain D P

机构信息

Department of Psychology, University of Western Ontario, London, Canada.

出版信息

Behav Neurosci. 1996 Feb;110(1):103-16.

PMID:8652059
Abstract

A detailed behavioral analysis of water-maze acquisition showed that the N-methyl-D-aspartate (NMDA) antagonist NPC17742 and the muscarinic antagonist scopolamine caused sensorimotor disturbances in behaviors required for maze performances and that these correlated with acquisition impairments in both hidden and visible platform versions of the maze in male rats. Behavioral disturbances included thigmotaxic swimming, swimming over and deflecting off the platform, abnormal swim behavior, and hyperactivity. Rats familiar with the behavioral strategies involved in the task performed normally under NPC17742 or scopolamine. The results indicated that drug-induced sensorimotor disturbances contributed to poor acquisition scores in naive rats. NMDA or muscarinic activity may contribute to but do not appear to be essential for spatial learning in the water maze.

摘要

对水迷宫获取过程的详细行为分析表明,N-甲基-D-天冬氨酸(NMDA)拮抗剂NPC17742和毒蕈碱拮抗剂东莨菪碱在迷宫表现所需行为中引起感觉运动障碍,且这些障碍与雄性大鼠在迷宫隐藏和可见平台版本中的获取障碍相关。行为障碍包括趋触性游泳、游过平台并偏离、异常游泳行为和多动。熟悉任务中所涉及行为策略的大鼠在NPC17742或东莨菪碱作用下表现正常。结果表明,药物诱导的感觉运动障碍导致了未接触过药物的大鼠较差的获取分数。NMDA或毒蕈碱活性可能对水迷宫中的空间学习有作用,但似乎并非必不可少。

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