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首页> 外文期刊>Brain and Neuroscience Advances >Medial temporal pathways for contextual learning: Network c-fos mapping in rats with or without perirhinal cortex lesions:
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Medial temporal pathways for contextual learning: Network c-fos mapping in rats with or without perirhinal cortex lesions:

机译:情景学习的内侧颞路:有或没有周围神经皮层病变的大鼠的网络c-fos作图:

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Background:In the rat brain, context information is thought to engage network interactions between the postrhinal cortex, medial entorhinal cortex, and the hippocampus. In contrast, object information is thought to be more reliant on perirhinal cortex and lateral entorhinal cortex interactions with the hippocampus.Method:The ‘context network’ was explored by mapping expression of the immediate-early gene, c-fos, after exposure to a new spatial environment.Results:Structural equation modelling of Fos counts produced networks of good fit that closely matched prior predictions based on anatomically grounded functional models. These same models did not, however, fit the Fos data from home-cage controls nor did they fit the corresponding data from a previous study exploring object recognition. These additional analyses highlight the specificity of the context network. The home-cage controls, meanwhile, showed raised levels of inter-area Fos correlations between the many sites examined, that is, their changes i...
机译:背景:在大鼠大脑中,上下文信息被认为参与了后皮层,内侧内嗅皮层和海马之间的网络交互。相比之下,认为对象信息更依赖于周围神经皮层和侧脑内嗅皮层与海马的相互作用。方法:通过映射直接接触早期基因c-fos的表达来探索“上下文网络”。结果:Fos计数的结构方程模型产生了良好拟合的网络,该网络与基于解剖学基础的功能模型的先前预测紧密匹配。但是,这些相同的模型不适用于家庭笼子控件的Fos数据,也不适用于先前研究对象识别的研究中的相应数据。这些额外的分析突出了上下文网络的特殊性。同时,家庭笼养对照显示,受检查的许多站点之间的区域间Fos相关性水平升高,也就是说,它们的变化...

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