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秋水仙碱引起的大鼠参考记忆改变:空间任务与非空间任务成分的作用

Colchicine-induced alterations of reference memory in rats: role of spatial versus non-spatial task components.

作者信息

Nanry K P, Mundy W R, Tilson H A

机构信息

Laboratory of Molecular and Integrative Neuroscience, National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709.

出版信息

Behav Brain Res. 1989 Oct 1;35(1):45-53. doi: 10.1016/s0166-4328(89)80007-5.

Abstract

Male, Fischer-344 rats received bilateral injections of 2.5 micrograms of colchicine per site in the dorsal and ventral hippocampus. Intradentate colchicine preferentially destroyed dentate granule cells. Subsequent behavioral studies showed that 3 weeks after dosing, colchicine impaired the acquisition of a spatial, reference memory task in the Morris water maze. In a second group of rats, which were trained in the water maze prior to dosing, intradentate colchicine impaired retention of this task when rats were tested 3 weeks later. The acquisition of non-spatial reference memory task, an autoshape of a lever touch response in an operant chamber, was facilitated by prior administration of colchicine. Facilitative effects of colchicine were seen if delays of 0, 4, or 6 s were interposed between response and presentation of food reinforcement. If rats were trained to lever-touch with either a 0- or 4-s delay between response and reinforcement, intradentate colchicine had no effect on retention of the response 3 weeks later. These data are in accord with the conclusion that the dentate gyrus plays an important role in the acquisition of new information and retrieval of previously learned material and is an integral neural substrate for reference memory involving a spatial component.

摘要

雄性Fischer-344大鼠在背侧和腹侧海马体的每个部位接受双侧注射2.5微克秋水仙碱。齿状体内注射秋水仙碱优先破坏齿状颗粒细胞。随后的行为学研究表明,给药3周后,秋水仙碱损害了在莫里斯水迷宫中空间参考记忆任务的获取。在第二组在给药前于水迷宫中训练的大鼠中,当3周后对大鼠进行测试时,齿状体内注射秋水仙碱损害了该任务的保持。秋水仙碱的预先给药促进了非空间参考记忆任务的获取,即在操作性条件反射箱中杠杆触摸反应的自动形成。如果在反应和食物强化呈现之间插入0、4或6秒的延迟,则可观察到秋水仙碱的促进作用。如果大鼠在反应和强化之间以0秒或4秒的延迟训练杠杆触摸,则齿状体内注射秋水仙碱在3周后对反应的保持没有影响。这些数据符合以下结论:齿状回在新信息的获取和先前学习材料的检索中起重要作用,并且是涉及空间成分的参考记忆的不可或缺的神经基质。

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