<p>In the left panel, the intertrial coherence irrespective of condition is depicted. While a strong coherence can be seen shortly after sound onset in the range below 10 Hz, this is not the case for the time-window used to investigate the beta-suppression, indicated by the black frame. In the right panel, power changes are shown, again irrespective of condition.</p
The subjective spatial effect of continuous noise signals with interaural time difference fluctuatio...
<p>(A) Coherence spectra during RS1 (black), after in-phase stimulation (RS3, green), and after anti...
We present numerical evidence and a theoretical analysis of the appearance of anticoherence resonanc...
<p>Power changes relative to baseline are shown for one second after auditory onset and in a frequen...
<p>The most left graphs (A,E,I) depict the coherence spectra within the 15–35 Hz frequency range for...
<p>For all panels data was averaged over 10 trials, the error bars or shaded areas represent the sta...
<p>Panel A: broadband noise. Panel B: low-CF noise band. Panel C: mid-CF noise band. Panel D: high-C...
<p>Power-spectral density (PSD) is shown for the dCA1 (A) and striatum (B), along with the coherence...
The subjective spatial effect of decaying noise signals with interaural time difference fluctuations...
cote interne IRCAM: McAdams90a/National audienceThresholds for detection of frequency modulation coh...
<p>(A) Grand mean coherence average over four posterior channel pairs: The solid black line depicts ...
<p>Results for different source configurations (illustrated by the insets) are shown in the correspo...
The subjective spatial effect of continuous noise signals with interaural time difference fluctuatio...
<p>A - Left, heat map shows the coherence between the mouth area function and the auditory signal as...
Previous studies have shown that normal-hearing (NH) listeners' spatial perception of non-stationary...
The subjective spatial effect of continuous noise signals with interaural time difference fluctuatio...
<p>(A) Coherence spectra during RS1 (black), after in-phase stimulation (RS3, green), and after anti...
We present numerical evidence and a theoretical analysis of the appearance of anticoherence resonanc...
<p>Power changes relative to baseline are shown for one second after auditory onset and in a frequen...
<p>The most left graphs (A,E,I) depict the coherence spectra within the 15–35 Hz frequency range for...
<p>For all panels data was averaged over 10 trials, the error bars or shaded areas represent the sta...
<p>Panel A: broadband noise. Panel B: low-CF noise band. Panel C: mid-CF noise band. Panel D: high-C...
<p>Power-spectral density (PSD) is shown for the dCA1 (A) and striatum (B), along with the coherence...
The subjective spatial effect of decaying noise signals with interaural time difference fluctuations...
cote interne IRCAM: McAdams90a/National audienceThresholds for detection of frequency modulation coh...
<p>(A) Grand mean coherence average over four posterior channel pairs: The solid black line depicts ...
<p>Results for different source configurations (illustrated by the insets) are shown in the correspo...
The subjective spatial effect of continuous noise signals with interaural time difference fluctuatio...
<p>A - Left, heat map shows the coherence between the mouth area function and the auditory signal as...
Previous studies have shown that normal-hearing (NH) listeners' spatial perception of non-stationary...
The subjective spatial effect of continuous noise signals with interaural time difference fluctuatio...
<p>(A) Coherence spectra during RS1 (black), after in-phase stimulation (RS3, green), and after anti...
We present numerical evidence and a theoretical analysis of the appearance of anticoherence resonanc...