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大鼠脑在气味辨别学习过程中c-fos mRNA表达的变化:海马亚区CA1和CA3的不同参与情况

Changes in c-fos mRNA expression in rat brain during odor discrimination learning: differential involvement of hippocampal subfields CA1 and CA3.

作者信息

Hess U S, Lynch G, Gall C M

机构信息

Department of Psychobiology, University of California at Irvine 92717, USA.

出版信息

J Neurosci. 1995 Jul;15(7 Pt 1):4786-95. doi: 10.1523/JNEUROSCI.15-07-04786.1995.

Abstract

Levels of c-fos mRNA were measured with in situ hybridization to test for behaviorally dependent changes in neuronal activity in three subdivisions of hippocampus and in components of the olfactory and visual systems. In rats that performed a well-learned nose-poke response for water reward, c-fos mRNA levels were broadly increased, relative to values in home cage-control rats, in visual cortex, superior colliculus, olfactory bulb, and, to comparable levels, regions CA3 and CA1 of hippocampus; hybridization was not increased in the dentate gyrus. In rats first trained on the nose-poke behavior and then required to discriminate between two odors for water reward, the increase in c-fos mRNA was generally not as great and was more regionally differentiated. Thus, in olfactory bulb, hybridization was more greatly elevated in lateral than medial fields, thereby exhibiting regional activation corresponding to the topographic representation of the predominant odor sampled in the discrimination task. In hippocampus of odor-discrimination rats, c-fos mRNA levels were far greater in the region CA3 than region CA1, but remained at cage control values in stratum granulosum. Interestingly, c-fos mRNA levels in each hippocampal subdivision were highly correlated with levels in other regions (e.g., visual cortex) for home cage controls but not for rats in the two behavioral groups. Thus, c-fos mRNA levels in cage-control rats appeared to be regulated by some generalized factor acting throughout much of the brain (e.g., arousal), while odor-discrimination performance changed the pattern of expression within hippocampus, and allowed for a differentiated response by olfactory regions to emerge. These findings suggest that hippocampus possesses multiple modes of functioning and makes contributions to behavior that vary according to task demands.

摘要

采用原位杂交法检测c-fos mRNA水平,以测试海马三个亚区以及嗅觉和视觉系统组成部分中神经元活动的行为依赖性变化。在为获取水奖励而执行熟练的鼻触反应的大鼠中,相对于笼内对照大鼠,视觉皮层、上丘、嗅球以及海马的CA3区和CA1区(达到可比水平)的c-fos mRNA水平普遍升高;齿状回中的杂交未增加。在首先接受鼻触行为训练,然后需要辨别两种气味以获取水奖励的大鼠中,c-fos mRNA的增加通常没有那么大,并且在区域上更具差异性。因此,在嗅球中,外侧区域的杂交比内侧区域升高得更多,从而表现出与辨别任务中所采样的主要气味的地形表示相对应的区域激活。在气味辨别大鼠的海马中,CA3区的c-fos mRNA水平远高于CA1区,但颗粒层中的水平仍保持在笼内对照值。有趣的是,对于笼内对照大鼠,每个海马亚区的c-fos mRNA水平与其他区域(如视觉皮层)的水平高度相关,但对于两个行为组的大鼠则不然。因此,笼内对照大鼠中的c-fos mRNA水平似乎受某种在大脑大部分区域起作用的广义因子(如唤醒)调节,而气味辨别表现改变了海马内的表达模式,并使嗅觉区域出现差异化反应。这些发现表明,海马具有多种功能模式,并根据任务需求对行为做出不同贡献。

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