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首页> 外文期刊>Trends in Neurosciences >Synapse rearrangements upon learning: from divergent-sparse connectivity to dedicated sub-circuits.
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Synapse rearrangements upon learning: from divergent-sparse connectivity to dedicated sub-circuits.

机译:学习后的突触重排:从发散稀疏连接到专用子电路。

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摘要

Learning can involve formation of new synapses and loss of synapses, providing memory traces of learned skills. Recent findings suggest that these synapse rearrangements reflect assembly of task-related sub-circuits from initially broadly distributed and sparse connectivity in the brain. These local circuit remodeling processes involve rapid emergence of synapses upon learning, followed by protracted validation involving strengthening of some new synapses, and selective elimination of others. The timing of these consolidation processes can vary. Here, we review these findings, focusing on how molecular/cellular mechanisms of synapse assembly, strengthening, and elimination might interface with circuit/system mechanisms of learning and memory consolidation. An integrated understanding of these learning-related processes should provide a better basis to elucidate how experience, genetic background, and disease influence brain function.
机译:学习可能涉及新突触的形成和突触的丧失,从而提供学习技能的记忆痕迹。最近的发现表明,这些突触的重排反映了最初与大脑中分布广泛且稀疏的连通性相关的任务相关子电路的组装。这些局部回路重塑过程涉及学习后突触的快速出现,随后是持久验证,包括加强了一些新的突触和选择性消除了其他突触。这些合并过程的时间可能会有所不同。在这里,我们回顾这些发现,重点关注突触组装,增强和消除的分子/细胞机制如何与学习和记忆巩固的电路/系统机制相联系。对这些与学习有关的过程的全面理解应该为阐明经验,遗传背景和疾病如何影响脑功能提供更好的基础。

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