Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG is a research paper published in Royal Society Open Science (2016). On theSindex it has a DataRank of 1.4. It has been cited 30 times, with 29 citing works in its 1-hop citation network.
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Base Score Contribution
0.515
From this paper's citation signal
Citation Network Contribution
0.873
From 27 citing papers with measurable signal
Swiss National Science Foundation
Grant: 32003B_146643
Swiss National Science Foundation
Grant: CRSII3_136249
Swiss National Science Foundation
Grant: 146643
Sleep onset and other state transitions: insights from quantitative EEG analysis
Swiss National Science Foundation
Grant: 136249
Resting states of the brain and state dependent information processing in health and disease
FWCI
2.10
Citation Percentile
0.9%
Citation Trend
Fields of Study
Keywords
Supplementary material from "Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG"
Supplementary material from "Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG"
Supplementary Figure S3: Subject average GFS spectra (smoothed, 9-point moving average; only for visualization purposes) of the wake EEG eyes open and eyes closed during sustained wakefulness of 40 h. Figure legend refers to the number of hours awake. Blue 0 h awake is after a baseline night of sleep while the 0 h wake in black is after a night of recovery sleep following sleep deprivation.
Supplementary Figure S3: Subject average GFS spectra (smoothed, 9-point moving average; only for visualization purposes) of the wake EEG eyes open and eyes closed during sustained wakefulness of 40 h. Figure legend refers to the number of hours awake. Blue 0 h awake is after a baseline night of sleep while the 0 h wake in black is after a night of recovery sleep following sleep deprivation.
Supplementary Figure S2: Illustration of GFS determination in complex plain for f= 12 Hz. Circles represent single EEG derivations and the length of the grey lines corresponds to the two eigenvalues λ1 and λ2 (see Methods). from Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG
Supplementary Figure S2: Illustration of GFS determination in complex plain for f= 12 Hz. Circles represent single EEG derivations and the length of the grey lines corresponds to the two eigenvalues λ1 and λ2 (see Methods). from Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG
Supplementary Figure S1: Name and location of the 27 electrodes projected onto a 2D surface used in the current study. Electrode position is at the center of the label. from Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG
Supplementary Figure S1: Name and location of the 27 electrodes projected onto a 2D surface used in the current study. Electrode position is at the center of the label. from Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG