首页> 美国卫生研究院文献>Frontiers in Behavioral Neuroscience >Differences in the Flexibility of Switching Learning Strategies and CREB Phosphorylation Levels in Prefrontal Cortex Dorsal Striatum and Hippocampus in Two Inbred Strains of Mice
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Differences in the Flexibility of Switching Learning Strategies and CREB Phosphorylation Levels in Prefrontal Cortex Dorsal Striatum and Hippocampus in Two Inbred Strains of Mice

机译:两种自交系小鼠的前额叶皮层背侧纹状体和海马的转换学习策略的灵活性和CREB磷酸化水平的差异

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摘要

Flexibility in using different learning strategies was assessed in two different inbred strains of mice, the C57BL/6 and DBA/2 strains. Mice were trained sequentially in two different Morris water maze protocols that tested their ability to switch their learning strategy to complete a new task after first being trained in a different task. Training consisted either of visible platform trials (cued training) followed by subsequent hidden platform trials (place training) or the reverse sequence (place training followed by cued training). Both strains of mice showed equivalent performance in the type of training (cued or place) that they received first. However, C57BL/6 mice showed significantly better performances than DBA/2 mice following the switch in training protocols, irrespective of the order of training. After completion of the switched training session, levels of cAMP response element-binding protein (CREB) and phosphorylated CREB (pCREB) were measured in the hippocampus, striatum and prefrontal cortex of the mice. Prefrontal cortical and hippocampal pCREB levels differed by strain, with higher levels found in C57BL/6 mice than in DBA/2 mice. No strain differences were observed in the medial or lateral region of the dorsal striatum. These findings indicate that the engagement (i.e., CREB signaling) of relevant neural structures may vary by the specific demands of the learning strategy, and this is closely tied to differences in the flexibility of C57BL/6 and DBA/2 mice to switch their learning strategies when given a new task.
机译:在两种不同的近交小鼠品系C57BL / 6和DBA / 2中评估了使用不同学习策略的灵活性。在两种不同的莫里斯水迷宫规程中对小鼠进行了顺序训练,测试了它们在首次接受不同任务训练后转换学习策略以完成新任务的能力。训练包括可见平台试验(提示训练),然后进行后续隐藏平台试验(位置训练),或反向顺序(位置训练之后提示训练)。两种品系的小鼠在其首先接受的训练类型(提示或位置)上均表现出相同的性能。但是,无论训练顺序如何,在训练方案切换后,C57BL / 6小鼠的表现均明显优于DBA / 2小鼠。转换训练结束后,测量小鼠海马,纹状体和前额叶皮层中cAMP反应元件结合蛋白(CREB)和磷酸化CREB(pCREB)的水平。前额皮层和海马pCREB水平因品系而异,C57BL / 6小鼠的水平高于DBA / 2小鼠。在背侧纹状体的内侧或外侧未观察到应变差异。这些发现表明,相关神经结构的参与(即CREB信号传导)可能会因学习策略的特定要求而异,这与C57BL / 6和DBA / 2小鼠切换学习方式的灵活性差异密切相关。给新任务时的策略。

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