首页> 外文期刊>Neurobiology of learning and memory >Theta oscillations underlie retrieval success effects in the nucleus accumbens and anterior thalamus: Evidence from human intracranial recordings
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Theta oscillations underlie retrieval success effects in the nucleus accumbens and anterior thalamus: Evidence from human intracranial recordings

机译:Theta振荡底部核心和丘脑中的检索成功效应:来自人类颅内记录的证据

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Previous imaging studies independently highlighted the role of the anterior thalamus (ANT) and nucleus accumbens (NAcc) in successful memory retrieval. While these findings accord with theoretical models, the precise temporal, oscillatory and network dynamics as well as the interplay between the NAcc and ANT in successfully retrieving information from long-term memory are largely unknown. We addressed this issue by recording intracranial electroencephalography in human epilepsy patients from the NAcc (n = 5) and ANT (n = 4) during an old/new recognition test. Our findings demonstrate that differences in event-related potentials between correctly classified old (i.e., studied) and new (i.e., unstudied) images emerged in the NAcc and ANT already between 200 and 600 ms after stimulus onset. Moreover, time frequency analyses revealed theta (4-8 Hz) power decreases for old compared to new items in the NAcc and the opposite effect in the ANT. Importantly, Granger causality analyses revealed a directional communication from ANT to NAcc suggesting that entrainment from ANT drives successful memory retrieval. Together, our findings show evidence for the notion that the NAcc and ANT receive memory signals, and that theta oscillations may serve as a mechanism to bind these distributed neural assemblies.
机译:以前的成像研究独立地强调了前丘脑(Ant)和核心腺(NACC)在成功的内存检索中的作用。虽然这些调查结果符合理论模型,但成功检索来自长期记忆的信息的NACC和ANC之间的精确时间,振荡和网络动态以及NACC和ANT之间的相互作用在很大程度上是未知数。在旧的/新识别测试期间,通过从NACC(n = 5)和ANC(n = 4)中的人癫痫患者中的颅内脑电图,通过从NACC(n = 5)中的颅内脑电图进行解决。我们的调查结果表明,在刺激发作后,在NACC和蚂蚁中出现了正确分类的旧(即,,研究)和新(即,未捕获的)图像之间的事件相关电位的差异。此外,时间频率分析显示了与NACC中的NACC中的新项目和ANT中的相反效果相比旧的θ(4-8 Hz)功率降低。重要的是,格兰杰因果关系分析揭示了来自Ant到NACC的定向通信,表明来自Ant的夹带驱动器成功的内存检索。我们的研究结果一起显示了NACC和蚂蚁接收存储器信号的概念的证据,并且θ振荡可以用作绑定这些分布式神经组件的机制。

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