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大鼠嗅周皮质损伤会加剧穹窿海马伞损伤后出现的记忆缺陷。

Lesions of rat perirhinal cortex exacerbate the memory deficit observed following damage to the fimbria-fornix.

作者信息

Wiig K A, Bilkey D K

机构信息

Department of Psychology, University of Otago, Dunedin, New Zealand.

出版信息

Behav Neurosci. 1995 Aug;109(4):620-30. doi: 10.1037//0735-7044.109.4.620.

Abstract

Rats that had received bilateral lesions of the perirhinal cortex, fimbria-fornix, combined lesions of both these structures, or sham operations were tested on an object-guided delayed non-match-to-sample task. Perirhinal lesioned and fimbria-fornix lesioned rats were moderately impaired when delay intervals of 30 s or more were introduced between the sample and test phases of the experiment. Animals with combined lesions displayed a considerably greater impairment than animals with lesions of either structure alone. The combined lesioned animals were severely impaired in the initial acquisition of the task and displayed a profound memory deficit at delay intervals of greater than 4 s. These results emphasize the importance of the perirhinal cortex to memory function and suggest that the perirhinal cortex and the hippocampal formation may function interactively in the execution of memory processes.

摘要

对接受了鼻周皮质双侧损伤、穹窿海马伞损伤、这两种结构的联合损伤或假手术的大鼠进行了一项物体引导的延迟非匹配样本任务测试。当在实验的样本阶段和测试阶段之间引入30秒或更长的延迟间隔时,鼻周皮质损伤和穹窿海马伞损伤的大鼠表现出中度损伤。联合损伤的动物比仅损伤其中一种结构的动物表现出明显更严重的损伤。联合损伤的动物在任务的初始习得中严重受损,并且在延迟间隔大于4秒时表现出严重的记忆缺陷。这些结果强调了鼻周皮质对记忆功能的重要性,并表明鼻周皮质和海马结构在记忆过程的执行中可能相互作用。

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