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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >DIFFERENT BRAIN NETWORKS UNDERLYING THE ACQUISITION AND EXPRESSION OF CONTEXTUAL FEAR CONDITIONING: A METABOLIC MAPPING STUDY
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DIFFERENT BRAIN NETWORKS UNDERLYING THE ACQUISITION AND EXPRESSION OF CONTEXTUAL FEAR CONDITIONING: A METABOLIC MAPPING STUDY

机译:情境恐惧条件的获取和表达下的不同脑网络:代谢映射研究

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The specific brain regions and circuits involved in the acquisition and expression of contextual fear conditioning are still a matter of debate. To address this issue, regional changes in brain metabolic capacity were mapped during the acquisition and expression of contextual fear conditioning using cytochrome oxidase (CO) quantitative histochemistry. In comparison with a group briefly exposed to a conditioning chamber, rats that received a series of randomly presented footshocks in the same conditioning chamber (fear acquisition group) showed increased CO activity in anxiety-related brain regions like the ventral periaqueductal gray, the ventral hippocampus, the lateral habenula, the mammillary bodies, and the laterodorsal thalamic nucleus. Another group received randomly presented footshocks, and it was re-exposed to the same conditioning chamber one week later (fear expression group). The conditioned group had significantly higher CO activity as compared with the matched control group in the following brain regions: the ventral periaqueductal gray, the central and lateral nuclei of the amygdala, and the bed nucleus of the stria terminalis. In addition, analysis of functional brain networks using interregional CO activity correlations revealed different patterns of functional connectivity between fear acquisition and fear expression groups. In particular, a network comprising the ventral hippocampus and amygdala nuclei was found in the fear acquisition group, whereas a closed reciprocal dorsal hippocampai network was detected in the fear expression group. These results suggest that contextual fear acquisition and expression differ as regards to the brain networks involved, although they share common brain regions involved in fear, anxiety, and defensive behavior.
机译:上下文恐惧条件的获取和表达中涉及的特定大脑区域和电路仍是一个争论的问题。为了解决这个问题,在使用细胞色素氧化酶(CO)定量组织化学技术获取和表达情境恐惧条件的过程中,绘制了大脑代谢能力的区域变化图。与短暂接触调理室的组相比,在同一调理室中接受一系列随机呈现的足底电击的大鼠(恐惧获取组)在焦虑相关脑区域(如腹腔导水管灰色,腹侧海马区)的CO活性增加,外侧ha管,乳头体和后背丘脑丘脑核。另一组随机接受足电,并在一周后再次暴露于同一调节室内(恐惧表达组)。在以下脑区域中,与对照组相比,适应组的CO活性显着更高:腹周导水管灰色,杏仁核的中央和外侧核以及终末纹的床核。此外,使用区域间CO活性相关性对功能性大脑网络的分析揭示了恐惧获取和恐惧表达组之间功能连接的不同模式。尤其是,在恐惧获取组中发现了一个包含腹侧海马和杏仁核的网络,而在恐惧表达组中发现了一个封闭的倒背海马网络。这些结果表明,尽管所涉及的大脑网络共享参与恐惧,焦虑和防御行为的共同大脑区域,但是上下文恐惧的获取和表达在涉及的大脑网络方面有所不同。

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