<p>a) Frequency range and time are respectively indicated in the y and x-axis of the maps. Color bars at the right side of the maps show the mean phase-locking value (in standard deviation units) between all electrodes pairs. Vertical lines indicate the TN second digit onset. The black segment rectangles delimit time windows showing significant differences between conditions for the LL<sub>B</sub><sup>math</sup> and LL<sub>S</sub><sup>math</sup> groups (<i>p</i> < 0.05). b) Spatial distribution of phase synchrony for each significant time-frequency windows. The points represent the location of the electrodes over the scalp. Frequency bands are indicated at the left of each row. Time windows are indicated at the bottom of each head. Black li...
Objectives: (1) To examine the validity of comparing the phase of broad-band signals. (2) To measure...
Analog signals of the cerebral cortex in behaving animals are char-acterized by strong oscillatory c...
In this paper, we present a method for the study of synchronization patterns measured from EEG scalp...
<p><b>A, B,</b> Time-frequency charts of the difference between risky and save offers in human (<b>A...
<p>Grand average stimulus-locked time-frequency diagrams of Phase Coherence (PC) in Go (upper row) a...
<p>The top and bottom rows correspond to lower (22–34 Hz) and higher (36–48 Hz) gamma bands, and twe...
<p>(A) Illustration of the meaning of the sign of the phase shift under our conventions. The orderin...
<p>(A) Top panel: Amplitude of functional MRI signals in the frequency interval 0.05–0.1 Hz (corresp...
<p>(A) Temporal evolution of GBPS pattern. Upper and lower panels correspond to control and RLS grou...
<p>The lines connecting electrode sites indicate significant higher (solid) and lower (dashed) of ph...
<p>The asterisks indicate statistical significance in a Kruskal-Wallis test. b) Mean synchronization...
<p>(A) The target and non-target ERP responses. (B) The two frequency maps corresponding to each con...
<p>Time-frequency plots of difference (post-sleep minus pre-sleep) phase-locking values (PLV) of sel...
<p>Phase Coherence (PC) values averaged across subjects and conditions for separate electrode pairs ...
Our objective was to examine if the high-density, 256 channel, scalp interictal EEG data can be used...
Objectives: (1) To examine the validity of comparing the phase of broad-band signals. (2) To measure...
Analog signals of the cerebral cortex in behaving animals are char-acterized by strong oscillatory c...
In this paper, we present a method for the study of synchronization patterns measured from EEG scalp...
<p><b>A, B,</b> Time-frequency charts of the difference between risky and save offers in human (<b>A...
<p>Grand average stimulus-locked time-frequency diagrams of Phase Coherence (PC) in Go (upper row) a...
<p>The top and bottom rows correspond to lower (22–34 Hz) and higher (36–48 Hz) gamma bands, and twe...
<p>(A) Illustration of the meaning of the sign of the phase shift under our conventions. The orderin...
<p>(A) Top panel: Amplitude of functional MRI signals in the frequency interval 0.05–0.1 Hz (corresp...
<p>(A) Temporal evolution of GBPS pattern. Upper and lower panels correspond to control and RLS grou...
<p>The lines connecting electrode sites indicate significant higher (solid) and lower (dashed) of ph...
<p>The asterisks indicate statistical significance in a Kruskal-Wallis test. b) Mean synchronization...
<p>(A) The target and non-target ERP responses. (B) The two frequency maps corresponding to each con...
<p>Time-frequency plots of difference (post-sleep minus pre-sleep) phase-locking values (PLV) of sel...
<p>Phase Coherence (PC) values averaged across subjects and conditions for separate electrode pairs ...
Our objective was to examine if the high-density, 256 channel, scalp interictal EEG data can be used...
Objectives: (1) To examine the validity of comparing the phase of broad-band signals. (2) To measure...
Analog signals of the cerebral cortex in behaving animals are char-acterized by strong oscillatory c...
In this paper, we present a method for the study of synchronization patterns measured from EEG scalp...