When flanker meets the n-back: What EEG and pupil dilation data reveal about the interplay between the two central-executive working memory functions inhibition and updating.
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Summary
Increased load on updating seemed to result in an overall more activated attentional network thus enhancing inhibitory control, such that task performance is less susceptible to distracting information.
- Type
- article
- Published
- 2015-10-01
- Cited by
- 119
- References
- 61
- Access
- Open access
- OpenAlex
- https://openalex.org/W1764650267
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25345481
Keywords
Working memory, Pupillary response, Psychology, Cognitive psychology, Task (project management)
References
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- The Electrophysiological Dynamics of Interference during the Stroop Task
- Working memory demands modulate cognitive control in the Stroop paradigm
- The flankers task and response competition: A useful tool for investigating a variety of cognitive problems
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- Pupillary Stroop effects
Cited by
- High Working Memory Load Impairs Language Processing during a Simulated Piloting Task: An ERP and Pupillometry Study
- EEG-based prediction of cognitive workload induced by arithmetic: a step towards online adaptation in numerical learning
- Executive functions and the generation of “random” sequential responses: A computational account
- Comparison of the Working Memory Load in N-Back and Working Memory Span Tasks by Means of EEG Frequency Band Power and P300 Amplitude
- Investigating the Prerequisites for a robust Neurotutor: The Detection of mixed User States containing Working Memory Load, Affective Valence and Affective Dominance
- Behavioral and Neural Correlates of Executive Function: Interplay between Inhibition and Updating Processes
- Cognitive load and self-regulation: Attempts to build a bridge
- Le cerveau au travail : Optimiser la Performance Humaine par la Neuroergonomie
- Distinct brain responses to different inhibitions: Evidence from a modified Flanker Task
- Executive function updating level modulates connectivity network between brain regions in alpha band
- Working Memory Capacity, Memory Load, and Cognitive Control Network
- Feature Weight Driven Interactive Mutual Information Modeling for Heterogeneous Bio-Signal Fusion to Estimate Mental Workload
- Context Sensitivity of EEG-Based Workload Classification Under Different Affective Valence
- Electroencephalography Based Analysis of Working Memory Load and Affective Valence in an N-back Task with Emotional Stimuli
- Skipping Breakfast Affects the Early Steps of Cognitive Processing: An Event-Related Brain Potentials Study
- Cortical oscillations and entrainment in speech processing during working memory load
- Pupil dilation as an index of effort in cognitive control tasks: A review
- Working memory capacity influences performance and brain networks: Evidence from effective connectivity analysis
- Cross-subject workload classification using pupil-related measures
- Unity and diversity in working memory load: Evidence for the separability of the executive functions updating and inhibition using machine learning
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