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Open AccessJournal ArticleDOI

Neural representation of task difficulty and decision making during perceptual categorization: a timing diagram.

TLDR
Using a cued paradigm, single-trial analysis of electroencephalography is used to identify a component in the EEG that reflects the inherent task difficulty and not simply a correlation with the stimulus.
Abstract
When does the brain know that a decision is difficult to make? How does decision difficulty affect the allocation of neural resources and timing of constituent cortical processing? Here, we use single-trial analysis of electroencephalography (EEG) to identify neural correlates of decision difficulty and relate these to neural correlates of decision accuracy. Using a cued paradigm, we show that we can identify a component in the EEG that reflects the inherent task difficulty and not simply a correlation with the stimulus. We find that this decision difficulty component arises ≈220 ms after stimulus presentation, between two EEG components that are predictive of decision accuracy [an “early” (170 ms) and a “late” (≈300 ms) component]. We use these results to develop a timing diagram for perceptual decision making and relate the component activities to parameters of a diffusion model for decision making.

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Citations
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Journal ArticleDOI

The Neural Basis of Decision Making

TL;DR: This work focuses on simple decisions that can be studied in the laboratory but emphasize general principles likely to extend to other settings, including deliberation and commitment.
Journal ArticleDOI

The Diffusion Decision Model: Theory and Data for Two-Choice Decision Tasks

TL;DR: The diffusion decision model is reviewed to show how it translates behavioral data accuracy, mean response times, and response time distributions into components of cognitive processing, including research in the domains of aging and neurophysiology.
Journal ArticleDOI

Diffusion Decision Model: Current Issues and History

TL;DR: This review relates the diffusion models to both earlier and more recent research in psychology to examine individual differences in cognitive and neural processes of speeded decision making.
Journal ArticleDOI

The neural systems that mediate human perceptual decision making.

TL;DR: Findings from human neuroimaging studies in conjunction with data analysis methods that can directly link decisions and signals in the human brain on a trial-by-trial basis are reviewed to lead to a new view about the neural basis of human perceptual decision-making processes.
Journal ArticleDOI

Characterizing the dynamics of mental representations: the temporal generalization method

TL;DR: By testing at which moment a specific mental content becomes decodable in brain activity, this work can characterize the time course of cognitive codes and provide a novel way to understand how mental representations are manipulated and transformed.
References
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Journal ArticleDOI

EEGLAB: an open source toolbox for analysis of single-trial EEG dynamics including independent component analysis.

TL;DR: EELAB as mentioned in this paper is a toolbox and graphic user interface for processing collections of single-trial and/or averaged EEG data of any number of channels, including EEG data, channel and event information importing, data visualization (scrolling, scalp map and dipole model plotting, plus multi-trial ERP-image plots), preprocessing (including artifact rejection, filtering, epoch selection, and averaging), Independent Component Analysis (ICA) and time/frequency decomposition including channel and component cross-coherence supported by bootstrap statistical methods based on data resampling.
Book

Signal detection theory and psychophysics

TL;DR: This book discusses statistical decision theory and sensory processes in signal detection theory and psychophysics and describes how these processes affect decision-making.
Journal ArticleDOI

The Attention System of the Human Brain

TL;DR: Illustration de trois fonctions principales qui sont predominantes dans l'etude de l'intervention de l'sattention dans les processus cognitifs: 1) orientation vers des evenements sensoriels; 2) detection des signaux par processus focal; 3) maintenir la vigilance en etat d'alerte
Journal ArticleDOI

A Theory of Memory Retrieval.

TL;DR: A theory of memory retrieval is developed and is shown to apply over a range of experimental paradigms, and it is noted that neural network models can be interfaced to the retrieval theory with little difficulty and that semantic memory models may benefit from such a retrieval scheme.
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