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The time frequency analysis of the ERP (Fig. 6 E, F, K, L; Table 1, lower part) showed that the saccade-aligned ERP accounted for only a small fraction of the 30- to 40-Hz activity.
The source reconstruction analysis of the ERP data confirmed that monitoring was associated with increased activity in visual areas and in right prefrontal and parietal regions (i.e., superior and inferior frontal gyri and posterior parietal cortex), which previous studies have linked to spatial and temporal monitoring.
Analysis of the ERP data indicated strong lexical class and relatedness effects at both occipito/temporal and anterior sites as early as 300 ms post-stimulus.
We performed an analysis of the ERP data introducing the Group factor (good vs. poor learners) and the within-subject factors, Block (1st, 2nd, 3rd, 4th minute) and Anterior-Posterior factors (see Table 3 for the statistical results).
Analysis of the ERP components elicited by the same physical stimulus, close in spatial frequency to the actual target and falling within the attended vs. unattended location, allowed us to identify the time course and neural bases of brain activation during the suppression of irrelevant information.
The analysis of the ERP latencies showed that, at the occipital channels, happy deviants were detected as different from neutral standards more than 20 ms earlier than fearful deviants were detected from neutral standards (140 ms versus 160 ms post-stimulus, respectively).
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Our analysis of the ERPs found several distinct patterns of effects: an anterior negativity between 300 and 500 ms and a more posteriorly distributed positivity extending from 400 through 900 ms.
Experiment 1b: Analysis of the ERPs, time-locked to the correctly evaluated target chords (which were either congruous or incongruous with the preceding word prime), revealed an increased negativity between 200 400 ms distributed broadly over the scalp in response to incongruous targets (Figure 3B).
Experiment 1a: Analysis of the ERPs, time-locked to the correctly evaluated target words (which were either congruous or incongruous with the preceding chord prime), revealed an increased negativity between 300 500 ms distributed broadly over the scalp in response to incongruous targets (Figure 3A).
Analysis of the ERPs elicited by the same physical stimulus, close in spatial frequency to the actual target and falling within the attended quadrant (pseudo-target) vs. a non-target location, allowed us to identify the time course and neural bases of brain activation during the suppression of irrelevant information.
ERP waveforms were maximal at midline recording sites for the task, therefore sites Pz and POz were chosen for further analysis of the P300 ERP component.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com