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Dual function of thalamic low-vigilance state oscillations: rhythm-regulation and plasticity

机译:丘脑低压状态振荡的双重功能:节奏调节和可塑性

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摘要

During inattentive wakefulness and non-rapid eye movement (NREM) sleep, the neocortex and thalamus cooperatively engage in rhythmic activities that are exquisitely reflected in the electroencephalogram as distinctive rhythms spanning a range of frequencies from 1 Hz slow waves to 13 Hz alpha waves. In the thalamus, these diverse activities emerge through the interaction of cell-intrinsic mechanisms and local and long-range synaptic inputs. One crucial feature, however, unifies thalamic oscillations of different frequencies: repetitive burst firing driven by voltage-dependent Ca2+ spikes. Recent evidence reveals that thalamic Ca2+ spikes are inextricably linked to global somatodendritic Ca2+ transients and are essential for several forms of thalamic plasticity. Thus, we propose herein that alongside their rhythm-regulation function, thalamic oscillations of low-vigilance states have a plasticity function that, through modifications of synaptic strength and cellular excitability in local neuronal assemblies, can shape ongoing oscillations during inattention and NREM sleep and may potentially reconfigure thalamic networks for faithful information processing during attentive wakefulness.
机译:在无所不在的清醒和非快速眼球运动(NREM)睡眠期间,Neocortex和丘脑协同地接合在脑电图中被精致地反射的节奏活动,作为跨越频率范围为13Hzα波的频率范围的独特节律。在丘脑中,这些不同的活动通过细胞内在机制和局部和远程突触输入的相互作用出现。然而,一个关键特征统一了不同频率的丘脑振荡:通过电压依赖性CA2 +尖峰驱动的重复突发烧制。最近的证据表明,丘脑Ca2 +尖峰与全球躯体躯体CA2 +瞬变有不可指指心,对于几种形式的丘陵可塑性至关重要。因此,我们提出的是,在其节奏调节功能旁边,低警觉状态的丘脑振荡具有可塑性功能,通过对局部神经元组件中的突触强度和细胞兴奋性的改性,可以在宿留和NREM睡眠期间造成持续的振荡,并且可以潜在地重新配置塔拉姆网络,以便在周到的清醒期间进行忠实信息处理。

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  • 来源
    《Nature reviews neuroscience》 |2018年第2期|共12页
  • 作者单位

    Univ Malta Dept Physiol &

    Biochem Msida Malta;

    Univ Szeged Dept Physiol Anat &

    Neurosci Hungarian Acad Sci Res Grp Cellular &

    Network;

    Australian Natl Univ Eccles Inst Neurosci John Curtin Sch Med Res Canberra ACT Australia;

    Univ Claude Bernard U1028 INSERM Unite Mixte Rech UMR 5292 CNRS Lyon Neurosci Res Lyon France;

    Vertex Pharmaceut Oxford England;

    Univ Pierre &

    Marie Curie UPMC Univ Paris 06 Sorbonne Univ INSERM CNRS Neurosci Paris Seine Inst;

    Univ Pierre &

    Marie Curie UPMC Univ Paris 06 Sorbonne Univ INSERM CNRS Neurosci Paris Seine Inst;

    Cardiff Univ Sch Med Neurosci &

    Mental Hlth Res Inst Cardiff Wales;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经生理学;
  • 关键词

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