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首页> 外文期刊>Frontiers in Human Neuroscience >Discrete Scale Invariance of Human Large EEG Voltage Deflections is More Prominent in Waking than Sleep Stage 2
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Discrete Scale Invariance of Human Large EEG Voltage Deflections is More Prominent in Waking than Sleep Stage 2

机译:与睡眠阶段2相比,人的大EEG电压偏转的离散尺度不变性在醒着时更为突出

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Electroencephalography (EEG) is typically viewed through the lens of spectral analysis. Recently, multiple lines of evidence have demonstrated that the underlying neuronal dynamics are characterized by scale-free avalanches. These results suggest that techniques from statistical physics may be used to analyze EEG signals. We utilized a publicly available database of fourteen subjects with waking and sleep stage 2 EEG tracings per subject, and observe that power-law dynamics of critical-state neuronal avalanches are not sufficient to fully describe essential features of EEG signals. We hypothesized that this could reflect the phenomenon of discrete scale invariance (DSI) in EEG large voltage deflections (LVDs) as being more prominent in waking consciousness. We isolated LVDs, and analyzed logarithmically transformed LVD size probability density functions (PDF) to assess for DSI. We find evidence of increased DSI in waking, as opposed to sleep stage 2 consciousness. We also show that the signatures of DSI are specific for EEG LVDs, and not a general feature of fractal simulations with similar statistical properties to EEG. Removing only LVDs from waking EEG produces a reduction in power in the alpha and beta frequency bands. These findings may represent a new insight into the understanding of the cortical dynamics underlying consciousness.
机译:脑电图(EEG)通常是通过光谱分析的镜头进行查看的。最近,多条证据表明,潜在的神经元动力学特征是无鳞雪崩。这些结果表明,统计物理学的技术可用于分析脑电信号。我们利用了一个由十四名受试者组成的公共数据库,每个受试者具有醒来和睡眠阶段2的EEG描迹,并观察到临界状态神经元雪崩的幂律动力学不足以完全描述EEG信号的基本特征。我们假设,这可能反映了脑电大电压偏转(LVDs)中离散尺度不变(DSI)现象在唤醒意识中更为突出。我们隔离了LVD,并分析了对数转换后的LVD大小概率密度函数(PDF)以评估DSI。我们发现醒来时DSI升高的证据与睡眠第二阶段意识相反。我们还表明,DSI的签名特定于脑电图LVD,而不是具有与脑电图相似的统计特性的分形模拟的一般特征。仅从唤醒脑电图中移除LVD会降低α和β频段的功率。这些发现可能代表了对意识潜在的皮质动力学理解的新见解。

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