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鼻中隔单次注射神经生长因子对水迷宫空间学习的影响。

Effects of a single intraseptal injection of NGF on spatial learning in the water maze.

作者信息

Janis L S, Glasier M M, Stein D G

机构信息

Institute of Animal Behavior, Rutgers University, Newark, NJ, USA.

出版信息

Physiol Behav. 1997 Jul;62(1):69-76. doi: 10.1016/s0031-9384(97)00143-1.

Abstract

Male Sprague-Dawley rats given electrolytic lesions of the septum followed by a single intraseptal injection of 5 microg of NGF were trained on a water maze task that assessed their ability to learn the location of a visible platform and the location of platform when it was submerged. Rats with damage to the septum acquired the visible platform version of the task but were significantly impaired in locating the submerged platform. Administration of NGF, however, produced an intermediate ameliorative effect on the measure of latency to find the hidden platform during these trials. In order to determine the relative strength of the place and cue responses learned during the visible and hidden platform training trials, a probe trial was given on the final test day in which the visible platform was moved to a new location. Control rats swam either to the new platform location or the old platform location indicating the use of both a place and cue response. However, both rats with septal damage alone and rats with septal lesions treated with NGF swam directly to the new platform location indicating the relative strength of the cue response. These results support previous findings indicating that a single injection of NGF can produce improvements on a cognitive task, but it may not be doing so by restoring lost spatial functions following septohippocampal damage.

摘要

对雄性斯普拉格-道利大鼠进行中隔电解损伤,随后在中隔内单次注射5微克神经生长因子(NGF),然后让它们接受水迷宫任务训练,该任务评估它们学习可见平台位置以及平台淹没时位置的能力。中隔受损的大鼠学会了可见平台版本的任务,但在定位淹没平台方面明显受损。然而,在这些试验中,给予NGF对找到隐藏平台的潜伏期测量产生了中等程度的改善作用。为了确定在可见和隐藏平台训练试验中学习到的位置和线索反应的相对强度,在最后测试日进行了一次探测试验,将可见平台移到一个新位置。对照大鼠游向新平台位置或旧平台位置,表明它们同时使用了位置和线索反应。然而,单独有中隔损伤的大鼠和用NGF治疗的中隔损伤大鼠都直接游向新平台位置,表明线索反应的相对强度。这些结果支持了先前的研究结果,即单次注射NGF可以在认知任务上产生改善,但它可能不是通过恢复中隔海马损伤后丧失的空间功能来实现的。

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