The Neural Basis of Human Error Processing: Reinforcement Learning, Dopamine, and the Error-Related Negativity.

The authors present a unified account of 2 neural systems concerned with the development and expression of adaptive behaviors: a mesencephalic dopamine system for reinforcement learning and a “generic” error-processing system associated with the anterior cingulate cortex. The existence of the erro...

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Publicado en:Psychological Review Vol. 109; no. 4; pp. 679 - 710
Autores principales: Holroyd, Clay B., Coles, Michael G. H.
Formato: Artículo
Publicado: American Psychological Association October 2002
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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      dt: October 2002
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        10.1037/0033-295X.109.4.679
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        atl: The Neural Basis of Human Error Processing: Reinforcement Learning, Dopamine, and the Error-Related Negativity.
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        au:
          Holroyd, Clay B.
          Coles, Michael G. H.
      su:
        Brain function localization
        Reinforcement (Psychology)
        Dopamine
        Cerebral cortex
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        subj:
          Brain function localization
          Reinforcement (Psychology)
          Dopamine
          Cerebral cortex
      ab: The authors present a unified account of 2 neural systems concerned with the development and expression of adaptive behaviors: a mesencephalic dopamine system for reinforcement learning and a “generic” error-processing system associated with the anterior cingulate cortex. The existence of the error-processing system has been inferred from the error-related negativity (ERN), a component of the event-related brain potential elicited when human participants commit errors in reaction-time tasks. The authors propose that the ERN is generated when a negative reinforcement learning signal is conveyed to the anterior cingulate cortex via the mesencephalic dopamine system and that this signal is used by the anterior cingulate cortex to modify performance on the task at hand. They provide support for this proposal using both computational modeling and psychophysiological experimentation. Reprinted by permission of the publisher.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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