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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Coordination of Human Hippocampal Sharpwave Ripples during NREM Sleep with Cortical Theta Bursts, Spindles, Downstates, and Upstates
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Coordination of Human Hippocampal Sharpwave Ripples during NREM Sleep with Cortical Theta Bursts, Spindles, Downstates, and Upstates

机译:在NREM睡眠期间的人类海马锐波涟漪的协调用皮质θ爆裂,锭子,底部和尚普斯

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In rodents, waking firing patterns replay in NREM sleep during hippocampal sharpwave ripples (HC-SWRs), correlated with neocortical graphoelements (NC-GEs). NC-GEs include theta bursts, spindles, downstates, and upstates. In humans, consolidation during sleep is correlated with scalp-recorded spindles and downstates/upstates, but HC-SWRs cannot be recorded noninvasively. Here we show in humans of both sexes that HC-SWRs are highly correlated with NC-GEs during NREM, with significantly more related HC-SWRs/NC-GEs for downstates or upstates than theta bursts or spindles, in N2 than N3, in posterior than anterior HC, in frontal than occipital cortex, and ipsilaterally than contralaterally. The preferences interacted (e.g., frontal spindles co-occurred frequently with posterior HC-SWRs in N2). These preferred GEs, stages, and locations for HC-SWR/NC-GE interactions may index selective consolidation activity, although that was not tested in this study. SWR recorded in different HC regions seldom co-occurred, and were related to GE in different cortical areas, showingthat HC-NC interact in multiple transient, widespread but discrete, networks. NC-GEs tend to occur with consistent temporal relationships to HC-SW Rs, and to each other. Cortical theta bursts usually precede HC-SWRs, where they may help define cortical input triggering HC-SWR firing. HC-SWRs often follow cortical downstate onsets, surrounded by locally decreased broadband power, suggesting a mechanism synchronizing cortical, thalamic, and hippocampal activities. Widespread cortical upstates and spindles follow HC-SWRs, consistent with the hypothesized contribution by hippocampal firing during HC-SW Rs to cortical firing-patterns during upstates and spindles. Overall, our results describe how hippocampal and cortical oscillations are coordinated in humans during events that are critical for memory consolidation in rodents.
机译:在啮齿动物中,在海马夏普波瓦波纹(HC-SWRS)期间,在NREM睡眠中唤醒射击模式重播,与NeoCortical GraphoeLements(NC-GES)相关。 NC-GES包括Theta爆发,主轴,左下方和呼篷。在人类中,睡眠期间的整合与头皮记录的锭子和下端/窗户相关,但不能录制HC-SWR。在这里,我们在NREM期间,HC-SWRS与NC-GES高度相关的人类的展示性,对于θ或upstates,在N2中,N2比N3在N3中具有明显更多的HC-SWRS / NC-GES。比前型HC,前枕骨皮层,远向枕形皮质,远离同侧。相互作用的偏好(例如,常规主轴在N 2中经常与后HC-SWR进行)。对于HC-SWR / NC-GE相互作用的这些优选的GES,阶段和位置可以指标选择性固结活性,但在本研究中未测试。在不同的HC地区录制的SWR很少发生同事,并且与不同皮质区域的GE有关,HC-NC在多个瞬态,广泛但离散的网络中显示HC-NC相互作用。 NC-GES倾向于以与HC-SW RS的一致的时间关系,彼此发生。皮质Theta突发通常在HC-SWR之前,它们可以帮助定义触发HC-SWR射击的皮质输入。 HC-SWRS经常遵循皮质下斯特岛的持续停滞,被局部减少的宽带电力包围,表明一种机制同步皮质,丘脑和海马活动。广泛的皮质悬挂和主轴遵循HC-SWRS,与HC-SW RS期间海马烧制的假设贡献一致,在起伏和主轴期间对皮质射击模式进行皮质射击模式。总体而言,我们的结果描述了在对啮齿动物内存整合至关重要的事件中如何在人类中协调海马和皮质振荡。

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