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Primed to Sleep: The Dynamics of Synaptic Plasticity Across Brain States

机译:入睡:跨大脑状态的突触可塑性的动力学。

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摘要

It is commonly accepted that brain plasticity occurs in wakefulness and sleep. However, how these different brain states work in concert to create long-lasting changes in brain circuitry is unclear. Considering that wakefulness and sleep are profoundly different brain states on multiple levels (e.g., cellular, molecular and network activation), it is unlikely that they operate exactly the same way. Rather it is probable that they engage different, but coordinated, mechanisms. In this article we discuss how plasticity may be divided across the sleep–wake cycle, and how synaptic changes in each brain state are linked. Our working model proposes that waking experience triggers short-lived synaptic events that are necessary for transient plastic changes and mark (i.e., ‘prime’) circuits and synapses for further processing in sleep. During sleep, synaptic protein synthesis at primed synapses leads to structural changes necessary for long-term information storage.
机译:人们普遍认为,大脑的可塑性发生在清醒和睡眠中。但是,尚不清楚这些不同的大脑状态如何协同工作以在大脑回路中产生持久的变化。考虑到清醒和睡眠在多个层面上(例如细胞,分子和网络激活)是完全不同的大脑状态,因此它们不太可能以完全相同的方式运行。相反,它们可能采用不同但协调的机制。在本文中,我们讨论了如何在整个睡眠-唤醒周期中分配可塑性,以及如何将每个大脑状态的突触变化联系起来。我们的工作模型提出,唤醒经验会触发短暂的突触事件,这对于短暂的塑料变化和标记(即“原始”)电路和突触在睡眠中进行进一步处理是必不可少的。在睡眠期间,引发的突触处的突触蛋白合成会导致长期信息存储所必需的结构变化。

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