Cortical development in the structural model and free energy minimization.

Cereb Cortex

Centre for Brain Research, School of Medicine, University of Auckland, 85 Park Road, Grafton, Auckland, New Zealand.

Published: October 2024

AI Article Synopsis

  • A model integrating Friston's Free Energy Principle with Barbas et al.'s Structural Model explores neocortical development through neural fields that utilize Hebbian and anti-Hebbian plasticity to enhance synchronization and reduce axonal length via apoptotic selection.
  • The emergence of a primary Markov blanket differentiates synaptic activity patterns between various layers of the neocortex, influencing the unique properties of neurons in dorsal versus ventral regions.
  • As development advances, complex systems of mirror symmetry and layered Markov blankets form, contributing to the columnar structure and adaptive response mechanisms characteristic of the neocortex.

Article Abstract

A model of neocortical development invoking Friston's Free Energy Principle is applied within the Structural Model of Barbas et al. and the associated functional interpretation advanced by Tucker and Luu. Evolution of a neural field with Hebbian and anti-Hebbian plasticity, maximizing synchrony and minimizing axonal length by apoptotic selection, leads to paired connection systems with mirror symmetry, interacting via Markov blankets along their line of reflection. Applied to development along the radial lines of development in the Structural Model, a primary Markov blanket emerges between the centrifugal synaptic flux in layers 2,3 and 5,6, versus the centripetal flow in layer 4, and axonal orientations in layer 4 give rise to the differing shape and movement sensitivities characteristic of neurons of dorsal and ventral neocortex. Prediction error minimization along the primary blanket integrates limbic and subcortical networks with the neocortex. Synaptic flux bypassing the blanket triggers the arousal response to surprising stimuli, enabling subsequent adaptation. As development progresses ubiquitous mirror systems separated by Markov blankets and enclosed blankets-within-blankets arise throughout neocortex, creating the typical order and response characteristics of columnar and noncolumnar cortex.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11520235PMC
http://dx.doi.org/10.1093/cercor/bhae416DOI Listing

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