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Medial Prefrontal Cortex–Pontine Nuclei Projections Modulate Suboptimal Cue-Induced Associative Motor Learning

机译:内侧前额叶皮层-脑桥核投射调节次优线索诱导的联想运动学习。

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摘要

Diverse and powerful mechanisms have evolved to enable organisms to modulate learning and memory under a variety of survival conditions. Cumulative evidence has shown that the prefrontal cortex (PFC) is closely involved in many higher-order cognitive functions. However, when and how the medial PFC (mPFC) modulates associative motor learning remains largely unknown. Here, we show that delay eyeblink conditioning (DEC) with the weak conditioned stimulus (wCS) but not the strong CS (sCS) elicited a significant increase in the levels of c-Fos expression in caudal mPFC. Both optogenetic inhibition and activation of the bilateral caudal mPFC, or its axon terminals at the pontine nucleus (PN) contralateral to the training eye, significantly impaired the acquisition, recent and remote retrieval of DEC with the wCS but not the sCS. However, direct optogenetic activation of the contralateral PN had no significant effect on the acquisition, recent and remote retrieval of DEC. These results are of great importance in understanding the elusive role of the mPFC and its projection to PN in subserving the associative motor learning under suboptimal learning cue.
机译:进化了多种强大的机制,使生物能够在各种生存条件下调节学习和记忆。累积证据表明前额叶皮层(PFC)与许多高级认知功能密切相关。但是,何时以及如何调节中间PFC(mPFC)的关联运动学习仍然很大程度上未知。在这里,我们显示延迟的眨眼条件(DEC)与弱条件刺激(wCS)而不是强CS(sCS)引起尾mPFC中c-Fos表达水平的显着增加。光遗传学抑制和激活双侧尾部mPFC或其与训练眼对侧的桥突核(PN)的轴突末端,均显着损害了wCS而不是sCS的DEC的获取,近期和远程恢复。但是,对侧PN的直接光遗传激活对DEC的获取,近期和远程取回均无明显影响。这些结果对于理解mPFC的难以捉摸的作用及其对PN在次优学习线索下为联想运动学习的辅助服务中具有重要意义。

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