Published November 27, 2013 | Version Published
Journal Article Open

Temporally Dissociable Mechanisms of Self-Control: Early Attentional Filtering Versus Late Value Modulation

  • 1. ROR icon Claremont McKenna College
  • 2. ROR icon Laboratory for Social and Neural Systems Research
  • 3. ROR icon California Institute of Technology

Abstract

Optimal decision-making often requires exercising self-control. A growing fMRI literature has implicated the dorsolateral prefrontal cortex (dlPFC) in successful self-control, but due to the limitations inherent in BOLD measures of brain activity, the neurocomputational role of this region has not been resolved. Here we exploit the high temporal resolution and whole-brain coverage of event-related potentials (ERPs) to test the hypothesis that dlPFC affects dietary self-control through two different mechanisms: attentional filtering and value modulation. Whereas attentional filtering of sensory input should occur early in the decision process, value modulation should occur later on, after the computation of stimulus values begins. Hungry human subjects were asked to make food choices while we measured neural activity using ERP in a natural condition, in which they responded freely and did not exhibit a tendency to regulate their diet, and in a self-control condition, in which they were given a financial incentive to lose weight. We then measured various neural markers associated with the attentional filtering and value modulation mechanisms across the decision period to test for changes in neural activity during the exercise of self-control. Consistent with the hypothesis, we found evidence for top-down attentional filtering early on in the decision period (150–200 ms poststimulus onset) as well as evidence for value modulation later in the process (450–650 ms poststimulus onset). We also found evidence that dlPFC plays a role in the deployment of both mechanisms.

Additional Information

© 2013 the authors. Received Dec. 19, 2012; revised Oct. 3, 2013; accepted Oct. 24, 2013. This work was supported by NSF Award No. 0851408. Author contributions: A.H., T.H., and A.R. designed research; A.H. performed research; A.H. analyzed data; A.H., T.H., and A.R. wrote the paper.

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Additional details

Identifiers

PMCID
PMC4018478
Eprint ID
43169
Resolver ID
CaltechAUTHORS:20140102-100930318

Funding

NSF
0851408

Dates

Created
2014-01-02
Created from EPrint's datestamp field
Updated
2021-11-10
Created from EPrint's last_modified field