Hyde Lynn A, Stavnezer Amy Jo, Bimonte Heather A, Sherman Gordon F, Denenberg Victor H
Biobehavioral Sciences Graduate Degree Program, University of Connecticut, U-154, 3107 Horsebarn Hill Road, Storrs 06269-4154, USA.
Behav Brain Res. 2002 Jul 18;133(2):247-59. doi: 10.1016/s0166-4328(02)00022-0.
About half of BXSB/MpJ-Yaa (BXSB) mice have neocortical ectopias (misplaced clusters of neurons located in layer I of cortex). Previous behavioral studies have suggested that ectopic mice have superior spatial, but equivalent nonspatial, reference memory learning. However, since spatial and nonspatial learning were not assessed in the same apparatus and with the same testing procedure, it is unclear if this conclusion is accurate. We have created a new nonspatial Morris maze for mice that differs from the spatial task only in the type of cues that must be utilized to efficiently locate the platform (intra-maze black/white patterns vs. extra-maze room cues) and does not differ in the level of task complexity or the presence of objects within the maze. Ectopic mice were very good in utilizing extra-maze cues when learning the spatial version and in utilizing intra-maze cues when learning the nonspatial version of the Morris maze, while non-ectopics were not, suggesting that ectopics have superior spatial and nonspatial reference memory. Ectopias in BXSB mice are usually located in prefrontal and/or motor cortex. The prefrontal cortex is involved in behavioral flexibility (e.g. being able to easily switch from using spatial to nonspatial cues). Only ectopic mice with ectopias specifically located in the prefrontal region of cortex demonstrated difficulty switching from using extra-maze to intra-maze cues and vice versa. Thus, the presence of one or more ectopias in the prefrontal region of cortex disrupted one of the normal functions of the prefrontal cortex.
约半数BXSB/MpJ-Yaa(BXSB)小鼠存在新皮质异位(位于皮质第I层的神经元错放簇)。先前的行为学研究表明,异位小鼠具有卓越的空间参考记忆学习能力,但非空间参考记忆学习能力相当。然而,由于空间学习和非空间学习并非在同一实验装置中采用相同测试程序进行评估,所以尚不清楚这一结论是否准确。我们为小鼠创建了一种新的非空间莫里斯迷宫,它与空间任务的区别仅在于高效定位平台所需利用的线索类型(迷宫内部的黑白图案与迷宫外部的房间线索),而在任务复杂程度或迷宫中物体的存在方面并无差异。异位小鼠在学习莫里斯迷宫的空间版本时非常善于利用迷宫外部线索,在学习非空间版本时善于利用迷宫内部线索,而非异位小鼠则不然,这表明异位小鼠具有卓越的空间和非空间参考记忆。BXSB小鼠的异位通常位于前额叶和/或运动皮质。前额叶皮质参与行为灵活性(例如能够轻松从使用空间线索切换到使用非空间线索)。只有异位位于皮质前额叶区域的异位小鼠在从使用迷宫外部线索切换到使用迷宫内部线索以及反之亦然时表现出困难。因此,皮质前额叶区域中一个或多个异位的存在扰乱了前额叶皮质的一项正常功能。