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首页> 外文期刊>Neurobiology of learning and memory >A single exposure to an enriched environment stimulates the activation of discrete neuronal populations in the brain of the fos-tau-lacZ mouse.
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A single exposure to an enriched environment stimulates the activation of discrete neuronal populations in the brain of the fos-tau-lacZ mouse.

机译:一次接触丰富的环境会刺激fos-tau-lacZ小鼠大脑中离散神经元种群的激活。

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摘要

Storage of experience, including learning and memory, is thought to involve plasticity within pre-existing brain circuits. One model for looking at experience-dependent changes is environmental enrichment (EE), which involves exposing animals to a complex novel environment. Animals exposed to EE have previously been shown to exhibit a variety of behavioural and structural alterations in the brain, including decreased stress, improved learning and memory, altered levels of immediate early genes and synaptic change in the visual cortex. We were interested in understanding what regions of the brain are activated during the initial stages of EE. We used fos-tau-lacZ (FTL) transgenic mice to examine changes in functional activation throughout the brain after a single exposure to EE. We found that there was a significant increase in FTL expression within particular morphologically identified neurons in a series of brain regions in the enriched group compared to control groups, indicating that multiple circuits were activated. These regions include the claustrum, infralimbic cortex, hippocampus, amygdala and the hypothalamus. The data suggest that EE stimulates an initial strong increase in activation of multiple functional circuits. These circuits are presumably involved in the initial response of the animal to the enriched environment.
机译:经验的存储,包括学习和记忆,被认为与先前存在的大脑回路内的可塑性有关。一种查看依赖于经验的变化的模型是环境丰富化(EE),它涉及将动物暴露于复杂的新颖环境中。先前已证明,暴露于EE的动物在大脑中表现出多种行为和结构改变,包括压力降低,学习和记忆改善,立即早期基因水平改变和视皮层突触变化。我们有兴趣了解在EE的初始阶段大脑的哪些区域被激活。我们使用fos-tau-lacZ(FTL)转基因小鼠检查了一次暴露于EE后整个大脑的功能激活变化。我们发现,与对照组相比,在富集组的一系列大脑区域中,在特定形态学识别的神经元内,FTL表达显着增加,表明多个回路被激活。这些区域包括锁骨,下肢皮质,海马,杏仁核和下丘脑。数据表明,EE刺激了多个功能电路激活的最初强劲增长。这些电路大概参与了动物对丰富环境的初始反应。

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