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Spatial exploration induces a persistent reversal of long-term potentiation in rat hippocampus (see comments)

机译:空间探索诱导大鼠海马中长期增强的持续逆转(见评论)

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摘要

Experience-dependent long-lasting increases in excitatory synaptic transmission in the hippocampus are believed to underlie certain types of memory. Whereas stimulation of hippocampal pathways in freely moving rats can readily elicit a long-term potentiation (LTP) of transmission that may last for weeks, previous studies have failed to detect persistent increases in synaptic efficacy after hippocampus-mediated learning. As changes in synaptic efficacy are contingent on the history of plasticity at the synapses, we have examined the effect of experience-dependent hippocampal activation on transmission after the induction of LTP. We show that exploration of a new, non-stressful environment rapidly induces a complete and persistent reversal of the expression of high-frequency stimulation-induced early-phase LTP in the CA1 area of the hippocampus, without affecting baseline transmission in a control pathway. LTP expression is not affected by exploration of familiar environments. We found that spatial exploration affected LTP within a defined time window because neither the induction of LTP nor the maintenance of long-established LTP was blocked. The discovery of a novelty-induced reversal of LTP expression provides strong evidence that extensive long-lasting decreases in synaptic efficacy may act in tandem with enhancements at selected synapses to allow the detection and storage of new information by the hippocampus.
机译:据信,海马兴奋性突触传递的经验依赖性持久增加是某些类型记忆的基础。自由活动大鼠的海马通路刺激可以很容易地引起可能持续数周的长期传播(LTP),而先前的研究未能检测到海马介导的学习后突触功效的持续增加。由于突触功效的变化取决于突触可塑性的历史,我们已经研究了LTP诱导后经验依赖型海马激活对传递的影响。我们表明,探索一个新的,非压力的环境迅速诱导高频刺激诱导的海马CA1区早期LTP的表达的一个完整而持久的逆转,而不会影响控制路径中的基线传递。 LTP表达不受熟悉环境的探索影响。我们发现空间探索会在定义的时间窗口内影响LTP,因为LTP的诱导和长期建立的LTP的维护都没有受到阻碍。新奇诱导的LTP表达逆转的发现提供了强有力的证据,表明突触效力的广泛长期下降可能与所选突触的增强协同作用,从而允许海马体检测和存储新信息。

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