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对大鼠海马结构经电解、注射红藻氨酸或秋水仙碱损伤后空间定位的行为学分析。

A behavioural analysis of spatial localization following electrolytic, kainate- or colchicine-induced damage to the hippocampal formation in the rat.

作者信息

Sutherland R J, Whishaw I Q, Kolb B

出版信息

Behav Brain Res. 1983 Feb;7(2):133-53. doi: 10.1016/0166-4328(83)90188-2.

Abstract

This experiment examines the notion that in the rat the hippocampal formation is an essential structure in the neurological representation of spatial abilities. Spatial localization by rats with different types of hippocampal damage, including bilateral electrolytic lesions, unilateral and bilateral kainic acid-induced CA3-CA4 lesions, and unilateral and bilateral colchicine-induced dentate gyrus lesions, was compared with vehicle-injected and normal control groups in the Morris water task. The task required the rats to escape from cold water by finding a submerged and hidden platform located at a fixed place within the room. The start point was varied randomly from trial to trial and there were no local cues available to indicate the position of the hidden platform. After training, the platform was moved. Escape latencies and the initial swimming headings revealed that all lesion groups, except the unilateral CA3-damaged group, were impaired at finding the platform: the dentate-damaged rats exhibited the greatest deficit. When the platform was moved the control rats swam mainly in the part of the pool that had previously contained the platform and, on finding it in the new location, they showed a marked dishabituation of rearing. None of the bilateral lesion groups showed these effects.

摘要

本实验检验了这样一种观点,即对于大鼠而言,海马结构是空间能力神经表征中的一个重要结构。在莫里斯水迷宫任务中,将不同类型海马损伤的大鼠(包括双侧电解损伤、单侧和双侧 kainic 酸诱导的 CA3 - CA4 损伤以及单侧和双侧秋水仙碱诱导的齿状回损伤)的空间定位与注射赋形剂的对照组和正常对照组进行了比较。该任务要求大鼠通过找到位于房间内固定位置的一个浸没且隐藏的平台来逃离冷水。每次试验的起点随机变化,且没有局部线索可用于指示隐藏平台的位置。训练后,移动平台。逃避潜伏期和初始游泳方向表明,除单侧 CA3 损伤组外,所有损伤组在寻找平台方面均受损:齿状回损伤的大鼠表现出最大的缺陷。当平台移动时,对照大鼠主要在水池中先前放置平台的区域游泳,并且当在新位置找到平台时,它们表现出明显的重新抬头的去习惯化现象。双侧损伤组均未表现出这些效应。

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