<p>(A) Grand mean ERP waveforms for positive, neutral, and negative words of small and large size, collapsed over posterior EPN (ROI) electrodes. Scalp distributions show differences between emotional (positive and negative) and neutral words at indicated time intervals. (B) Grand means at centroparietal LPC electrodes and topographies of the late posterior complex as difference between emotional and neutral words in the indicated time range. (C) Effects of stimulus size on grand means over posterior EPN electrodes and scalp distribution of difference waves between large and small words in the time interval of the early posterior negativity. (D) Grand means for small and large words at centroparietal LPC electrodes and scalp distributions o...
Processing affectively charged visual stimuli typically results in increased amplitude of specific e...
<p>Grand average ERP waveforms recorded from central midline electrode Cz (upper panels) and parieta...
Schindler S, Schettino A, Pourtois G. Electrophysiological correlates of the interplay between low-l...
ERPs contrasted for happy and neutral faces during the learning (A) and consolidation phase (C) with...
We distinguish two evaluative systems which evoke automatic and reflective emotions. Automatic emoti...
<p>Average ERPs from 100 ms before up to 600 ms after the onset of the picture pair, for homogeneous...
<p>The bottom panel shows topographic maps for difference waves between neutral and each of the othe...
<p>A) Grand-averaged ERPs time-locked to the onset of the first word. Representative electrodes show...
<p>(<b>A</b>) Evoked potentials/fields (ERPs/ERMFs) during reading of positive (green) and negative ...
© 2015, Springer Science+Business Media New York. The late positive potential (LPP) elicited by aff...
<p>Mean amplitudes and peak latencies for the recognition potential (RP) evoked by the word processi...
Kißler J, Herbert C. Emotion, Etmnooi, or Emitoon? - Faster lexical access to emotional than to neut...
<div><p>We distinguish two evaluative systems which evoke automatic and reflective emotions. Automat...
<p>(A) ERP waveforms for correct adjectives and three violation conditions referred to a 200-ms pres...
Processing affectively charged visual stimuli typically results in increased amplitude of specific e...
Processing affectively charged visual stimuli typically results in increased amplitude of specific e...
<p>Grand average ERP waveforms recorded from central midline electrode Cz (upper panels) and parieta...
Schindler S, Schettino A, Pourtois G. Electrophysiological correlates of the interplay between low-l...
ERPs contrasted for happy and neutral faces during the learning (A) and consolidation phase (C) with...
We distinguish two evaluative systems which evoke automatic and reflective emotions. Automatic emoti...
<p>Average ERPs from 100 ms before up to 600 ms after the onset of the picture pair, for homogeneous...
<p>The bottom panel shows topographic maps for difference waves between neutral and each of the othe...
<p>A) Grand-averaged ERPs time-locked to the onset of the first word. Representative electrodes show...
<p>(<b>A</b>) Evoked potentials/fields (ERPs/ERMFs) during reading of positive (green) and negative ...
© 2015, Springer Science+Business Media New York. The late positive potential (LPP) elicited by aff...
<p>Mean amplitudes and peak latencies for the recognition potential (RP) evoked by the word processi...
Kißler J, Herbert C. Emotion, Etmnooi, or Emitoon? - Faster lexical access to emotional than to neut...
<div><p>We distinguish two evaluative systems which evoke automatic and reflective emotions. Automat...
<p>(A) ERP waveforms for correct adjectives and three violation conditions referred to a 200-ms pres...
Processing affectively charged visual stimuli typically results in increased amplitude of specific e...
Processing affectively charged visual stimuli typically results in increased amplitude of specific e...
<p>Grand average ERP waveforms recorded from central midline electrode Cz (upper panels) and parieta...
Schindler S, Schettino A, Pourtois G. Electrophysiological correlates of the interplay between low-l...