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The secret life of predictive brains: what's spontaneous activity for?

期刊

TRENDS IN COGNITIVE SCIENCES
卷 25, 期 9, 页码 730-743

出版社

CELL PRESS
DOI: 10.1016/j.tics.2021.05.007

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资金

  1. European Union's Horizon 2020 Framework Programme for Research and Innovation under the Specific Grant [785907, 945539]
  2. European Research Council [820213]
  3. Italian Ministry of Health [RF-2013-02359306]
  4. CARIPARO Foundation Excellence Grant
  5. MIUR [262]
  6. FC-Neuro Progetto Strategico University of Padova
  7. NIH [NS095741]
  8. BIAL Foundation [361/18]
  9. Dept. Excellence Italian Ministry of Research (MIUR)
  10. CARIPARO foundation Padova
  11. Celeghin Foundation
  12. FLAG-ERA JTC

向作者/读者索取更多资源

This passage explains that even when the brain is at rest, it still generates highly structured activity, and spontaneous activity plays a key role in top-down dynamics of generative models. During rest, top-down dynamics optimize generative models by maximizing the entropy of explanations and minimizing model complexity to prepare for future interactions.
Brains at rest generate dynamical activity that is highly structured in space and time. We suggest that spontaneous activity, as in rest or dreaming, underlies top-down dynamics of generative models. During active tasks, generative models provide top-down predictive signals for perception, cognition, and action. When the brain is at rest and stimuli are weak or absent, top-down dynamics optimize the generative models for future interactions by maximizing the entropy of explanations and minimizing model complexity. Spontaneous fluctuations of correlated activity within and across brain regions may reflect transitions between 'generic priors' of the generative model: low dimensional latent variables and connectivity patterns of the most common perceptual, motor, cognitive, and interoceptive states. Even at rest, brains are proactive and predictive.

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