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A synapse-specific refractory period for plasticity at individual dendritic spines

机译:单个树突棘可塑性的突触特异性不应期

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摘要

A refractory period in which newly modified synaptic connections are unable to undergo further plasticity is a proposed mechanism through which newly formed memories can be preserved at the synaptic level while brain plasticity is ongoing. Here, we provide insights into the spatiotemporal signaling mechanisms that regulate the establishment and maintenance of a refractory period for plasticity at individual excitatory synapses in the hippocampus, a region of the brain vital for learning and memory. Our results have implications in the identification of molecular targets that could serve to improve learning outcomes associated with disease.
机译:新修改的突触连接无法进一步可塑性的不应期是一种拟议的机制,通过该机制,新形成的记忆可以在突触水平上保留,同时大脑可塑性正在进行。在这里,我们提供了对时空信号机制的见解,这些机制调节海马体中单个兴奋性突触的可塑性不应期的建立和维持,海马体是大脑中对学习和记忆至关重要的区域。我们的结果对确定可能有助于改善与疾病相关的学习成果的分子靶点具有意义。

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