Prefrontal Goal Codes Emerge as Latent States in Probabilistic Value Learning.

J Cogn Neurosci

National Research Council, Rome, Italy.

Published: January 2016

AI Article Synopsis

  • The prefrontal cortex (PFC) is vital for goal-directed actions and controlling behavior, though how it does this is debated.
  • Evidence from computational modeling and monkey neuronal data indicates that neural representations of goals in the PFC emerge through a combination of categorization and reward-driven processes.
  • This goal coding is shown to offer an efficient solution to cognitive control challenges, paralleling efficient coding in other brain regions, and has broader implications for neurophysiological research.

Article Abstract

The prefrontal cortex (PFC) supports goal-directed actions and exerts cognitive control over behavior, but the underlying coding and mechanism are heavily debated. We present evidence for the role of goal coding in PFC from two converging perspectives: computational modeling and neuronal-level analysis of monkey data. We show that neural representations of prospective goals emerge by combining a categorization process that extracts relevant behavioral abstractions from the input data and a reward-driven process that selects candidate categories depending on their adaptive value; both forms of learning have a plausible neural implementation in PFC. Our analyses demonstrate a fundamental principle: goal coding represents an efficient solution to cognitive control problems, analogous to efficient coding principles in other (e.g., visual) brain areas. The novel analytical-computational approach is of general interest because it applies to a variety of neurophysiological studies.

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Source
http://dx.doi.org/10.1162/jocn_a_00886DOI Listing

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