A Neural Network Model of Individual Differences in Task Switching Abilities (Author's Manuscript)

Abstract

We use a biologically grounded neural network model to investigate the brain mechanisms underlying individual differences specific to the selection and instantiation of representations that exert cognitive control in task switching. Existing computational models of task switching do not focus on individual differences and so cannot explain why task switching abilities are separable from other executive function (EF) abilities (such as response inhibition). We explore hypotheses regarding neural mechanisms underlying the Shifting-Specific and Common EF components of EF proposed in the Unity/Diversity model (Miyake and Friedman, 2012) and similar components in related theoretical frameworks. We do so by adapting a well-developed neural network model of working memory (Prefrontal cortex, Basal ganglia Working Memory or PBWM; Hazy, Frank, and OReilly, 2007) to task switching and the Stroop task, and comparing its behavior on those tasks under a variety of individual difference manipulations. Results are consistent with the hypotheses that variation specific to task switching (i.e., Shifting-Specific) may be related to uncontrolled, automatic persistence of goal representations, whereas variation general to multiple EFs (i.e., Common EF) may be related to the strength of PFC representations and their effect on processing in the remainder of the cognitive system. Moreover, increasing signal to noise ratio in PFC, theoretically tied to levels of tonic dopamine and a genetic polymorphism in the COMT gene, reduced Stroop interference but increased switch costs. This stability-flexibility tradeoff provides an explanation for why these two EF components sometimes show opposing correlations with other variables such as attention problems and self-restraint.

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Document Details

Document Type
Technical Report
Publication Date
Apr 30, 2014
Accession Number
AD1044927

Entities

People

  • Angela M. Brant
  • Christopher H. Chatham
  • Naomi P. Friedman
  • Randall C. O'Reilly
  • Seth A. Herd
  • Tom E. Hazy

Organizations

  • University of Colorado Boulder

Tags

Communities of Interest

  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Behavioral Genetics
  • Brain
  • Cerebral Cortex
  • Cognition
  • Cognitive Neuroscience
  • Cognitive Science
  • Diseases And Disorders
  • Genetic Variation
  • Genetics
  • Mental Processes
  • Neural Networks
  • Neuroimaging
  • Neurosciences
  • New York
  • Psychiatry
  • Psychology
  • Task Performance And Analysis

Fields of Study

  • Psychology

Readers

  • Brain and Cognitive Science; Experimental Psychology; Cognitive Neuroscience
  • Neural Network Machine Learning.
  • Neuroscience

Technology Areas

  • AI & ML
  • Biotechnology