Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for the linear correlation when the intra-layer and inter-layer coupling strength are set to 0.23 and 0.9, respectively.</p
<p>Showing the correlations between the Amplitude, Evoked (Amplitude Modulation), Phase Synchrony an...
<p>Coupling strength between the 4–8 Hz and 35–45 Hz components for real (R) and surrogate (S) datas...
The panels show the evolution of order parameters of the upper (a) and lower (b) layers with the inc...
Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for t...
Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for t...
Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for t...
(a) The evolution of order parameter of the upper layer for the linear correlation. (b) and (c) show...
Both of them correspond to the super-linear correlations, (a) β = 1.3, (b) β = 1.7. Every data point...
<p>Coupling strength between the 4–8 Hz and 8–12 Hz components was measured using the PLV. Mean PLV ...
<p>a) Correlated carrier vs. uncorrelated carrier; b) Correlated carrier vs. anti-correlated carrier...
<p>Correlation plots for the resistance, reactance and phase at 50kHz EIM versus SFL thickness using...
The inter-layer coupling strength λ is set to 0.5. Every data point in the two panels is the average...
<p>Coupling strength for IC and NC conditions was measured using the PLV. Mean PLV for the 1–4 Hz an...
The intra-layer coupling strength μ is set to 0.8. Every data point in the two panels is the average...
<p>The phase-amplitude (top rows) and phase-phase (bottom rows) couplings were measured without adap...
<p>Showing the correlations between the Amplitude, Evoked (Amplitude Modulation), Phase Synchrony an...
<p>Coupling strength between the 4–8 Hz and 35–45 Hz components for real (R) and surrogate (S) datas...
The panels show the evolution of order parameters of the upper (a) and lower (b) layers with the inc...
Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for t...
Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for t...
Snapshots of the instantaneous phases (left panel) and the effective frequencies (right panel) for t...
(a) The evolution of order parameter of the upper layer for the linear correlation. (b) and (c) show...
Both of them correspond to the super-linear correlations, (a) β = 1.3, (b) β = 1.7. Every data point...
<p>Coupling strength between the 4–8 Hz and 8–12 Hz components was measured using the PLV. Mean PLV ...
<p>a) Correlated carrier vs. uncorrelated carrier; b) Correlated carrier vs. anti-correlated carrier...
<p>Correlation plots for the resistance, reactance and phase at 50kHz EIM versus SFL thickness using...
The inter-layer coupling strength λ is set to 0.5. Every data point in the two panels is the average...
<p>Coupling strength for IC and NC conditions was measured using the PLV. Mean PLV for the 1–4 Hz an...
The intra-layer coupling strength μ is set to 0.8. Every data point in the two panels is the average...
<p>The phase-amplitude (top rows) and phase-phase (bottom rows) couplings were measured without adap...
<p>Showing the correlations between the Amplitude, Evoked (Amplitude Modulation), Phase Synchrony an...
<p>Coupling strength between the 4–8 Hz and 35–45 Hz components for real (R) and surrogate (S) datas...
The panels show the evolution of order parameters of the upper (a) and lower (b) layers with the inc...