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大鼠在T型迷宫中的空间延迟交替:内侧前额叶皮质神经毒性损伤及T型迷宫旋转的影响

Spatial delayed alternation of rats in a T-maze: effects of neurotoxic lesions of the medial prefrontal cortex and of T-maze rotations.

作者信息

Sánchez-Santed F, de Bruin J P, Heinsbroek R P, Verwer R W

机构信息

Graduate School of Neurosciences Amsterdam, Netherlands Institute for Brain Research.

出版信息

Behav Brain Res. 1997 Mar;84(1-2):73-9. doi: 10.1016/s0166-4328(97)83327-x.

Abstract

The medial prefrontal cortex (mPFC) is usually considered to be a brain area important for working memory processes. In rats this statement is evidenced by their diminished performance in delay-type tasks following mPFC damage, notably in spatial delayed alternation (SDA) in a T-maze. This study has addressed two questions. First, to examine whether the functional deficiency in SDA, observed in rats with (usually large) mPFC damage, can be ascribed to an anatomically defined subarea of mPFC, the dorsal anterior cingulate area (ACd). Small, bilateral, NMDA-induced lesions were made, restricted to the dorsal part of mPFC. The performance of such animals in a T-maze paradigm, using delays of 0 and 15 s, was compared with sham-operated animals. Although these small lesions resulted in an increased number of perseverative errors, this effect was not delay-dependent, and, moreover, by the end of the training group differences had disappeared. The second aim was to study whether or not spatial (extra-maze) cues are important for the performance of this task. This was achieved by subjecting the well-trained sham-operated animals to a series of systematic trial-to-trial variations in the position of the maze in the experimental room. These spatial manipulations severely impaired the performance of the SDA task, indicating that extra-maze information is required to solve this task. In animals with ACd lesions, subjected to the same manipulations, the deficiency was comparable to that of the sham-operated animals.

摘要

内侧前额叶皮质(mPFC)通常被认为是对工作记忆过程至关重要的脑区。在大鼠中,mPFC损伤后其在延迟型任务中的表现下降可证明这一说法,尤其是在T迷宫中的空间延迟交替(SDA)任务中。本研究探讨了两个问题。第一,研究在(通常较大的)mPFC损伤大鼠中观察到的SDA功能缺陷是否可归因于mPFC的一个解剖学定义的子区域,即背侧前扣带区(ACd)。制作了双侧小的、由N - 甲基 - D - 天冬氨酸(NMDA)诱导的损伤,局限于mPFC的背侧部分。将此类动物在T迷宫范式中使用0秒和15秒延迟的表现与假手术动物进行比较。尽管这些小损伤导致了持续错误数量增加,但这种影响并不依赖于延迟,而且到训练结束时组间差异消失。第二个目的是研究空间(迷宫外)线索对该任务的表现是否重要。这是通过让训练良好的假手术动物在实验室内对迷宫位置进行一系列系统的逐次试验变化来实现的。这些空间操作严重损害了SDA任务的表现,表明解决该任务需要迷宫外信息。在接受相同操作的ACd损伤动物中,缺陷与假手术动物相当。

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