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Fos成像揭示了大鼠在应对不同空间记忆测试时海马体和海马旁回亚区激活的差异模式。

Fos imaging reveals differential patterns of hippocampal and parahippocampal subfield activation in rats in response to different spatial memory tests.

作者信息

Vann S D, Brown M W, Erichsen J T, Aggleton J P

机构信息

School of Psychology, Cardiff University, Cardiff, CF10 3YG, United Kingdom.

出版信息

J Neurosci. 2000 Apr 1;20(7):2711-8. doi: 10.1523/JNEUROSCI.20-07-02711.2000.

Abstract

We compared neuronal activation, as measured by Fos staining, during different spatial tasks in two experiments. The counts of Fos-stained neurons in the hippocampus increased as the spatial demands of the tasks increased, the tasks having been carefully matched for other factors. In Experiment 1, matched groups of rats either ran a standard eight-arm radial maze task or were trained to run up and down just one arm of the maze; the number of runs and rewards was identical in both conditions. In Experiment 2, rats were trained on the eight-arm maze but in different rooms. On the critical test day, both groups were run in the same room so that one group now performed with novel landmarks. All hippocampal subfields (dentate gyrus, CA3, CA1, dorsal, ventral, and caudal subiculum) showed a relative increases in c-fos activation in the eight-arm (Experiment 1) and novel room (Experiment 2) conditions, the sole exception being the ventral subiculum in Experiment 2. Although increased c-fos activation was found in both dorsal and ventral hippocampus, in Experiment 2 the relative increase was significantly greater in the dorsal hippocampus. Parahippocampal cortices responded heterogeneously: the perirhinal cortex failed to show increased activation in both experiments, in contrast to the entorhinal and postrhinal cortices. Subsequent comparisons confirmed that the perirhinal and postrhinal cortices responded in qualitatively different ways, the perirhinal cortex differing from the rest of the hippocampal formation. These experiments, which provide the first analysis of hippocampal Fos production during tests of allocentric spatial working memory, reveal that all components of the hippocampus are activated, but that under certain conditions the dorsal hippocampus is disproportionately involved.

摘要

在两项实验中,我们比较了在不同空间任务期间通过Fos染色测量的神经元激活情况。随着任务空间需求的增加,海马体中Fos染色神经元的数量也会增加,这些任务在其他因素方面经过了精心匹配。在实验1中,将配对的大鼠组分别置于标准的八臂放射状迷宫任务中,或者训练它们只在迷宫的一个臂上来回奔跑;两种条件下的奔跑次数和奖励数量相同。在实验2中,大鼠在八臂迷宫中进行训练,但在不同的房间。在关键测试日,两组大鼠在同一房间进行测试,这样其中一组现在是在有新地标物的环境中执行任务。所有海马亚区(齿状回、CA3、CA1、背侧、腹侧和尾侧下托)在八臂迷宫(实验1)和新房间(实验2)条件下均显示出c-fos激活相对增加,唯一的例外是实验2中的腹侧下托。尽管在背侧和腹侧海马体中均发现c-fos激活增加,但在实验2中,背侧海马体的相对增加更为显著。海马旁皮质的反应存在异质性:在两项实验中,梨状皮质均未显示出激活增加,这与内嗅皮质和嗅周皮质形成对比。后续比较证实,梨状皮质和嗅周皮质的反应在性质上有所不同,梨状皮质与海马结构的其他部分不同。这些实验首次分析了在以自我为中心的空间工作记忆测试期间海马体Fos的产生情况,结果表明海马体的所有组成部分均被激活,但在某些条件下,背侧海马体的参与程度不成比例。

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本文引用的文献

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Activation of immediate early genes and memory formation.即刻早期基因的激活与记忆形成。
Cell Mol Life Sci. 1999 Apr;55(4):564-74. doi: 10.1007/s000180050315.
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Functional differentiation in the hippocampus.海马体中的功能分化
Hippocampus. 1998;8(6):608-19. doi: 10.1002/(SICI)1098-1063(1998)8:6<608::AID-HIPO3>3.0.CO;2-7.
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Differential effects of dorsal and ventral hippocampal lesions.背侧和腹侧海马体损伤的不同影响。
J Neurosci. 1998 Sep 1;18(17):7027-32. doi: 10.1523/JNEUROSCI.18-17-07027.1998.

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