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Learning to optimize perceptual decisions through suppressive interactions in the human brain. | LitMetric

AI Article Synopsis

  • Research shows that learning enhances perceptual judgments by minimizing external noise and distractions in complex environments.
  • A study using ultra-high field magnetic resonance spectroscopy found that GABA (a neurotransmitter) levels in parietal and visual areas are linked to the brain's ability to suppress irrelevant information during training.
  • The results indicate that learning optimizes perceptual decisions through specific brain connectivity changes, highlighting the importance of both local and inter-cortical interactions in improving target detection and feature discrimination tasks.

Article Abstract

Translating noisy sensory signals to perceptual decisions is critical for successful interactions in complex environments. Learning is known to improve perceptual judgments by filtering external noise and task-irrelevant information. Yet, little is known about the brain mechanisms that mediate learning-dependent suppression. Here, we employ ultra-high field magnetic resonance spectroscopy of GABA to test whether suppressive processing in decision-related and visual areas facilitates perceptual judgments during training. We demonstrate that parietal GABA relates to suppression of task-irrelevant information, while learning-dependent changes in visual GABA relate to enhanced performance in target detection and feature discrimination tasks. Combining GABA measurements with functional brain connectivity demonstrates that training on a target detection task involves local connectivity and disinhibition of visual cortex, while training on a feature discrimination task involves inter-cortical interactions that relate to suppressive visual processing. Our findings provide evidence that learning optimizes perceptual decisions through suppressive interactions in decision-related networks.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6349878PMC
http://dx.doi.org/10.1038/s41467-019-08313-yDOI Listing

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