AI Article Synopsis

  • People manage their limited working memory capacity by prioritizing items based on relevance, but the brain mechanisms behind this process were unclear.
  • Researchers developed advanced computational methods to analyze brain responses to multiple memory items and found that higher-priority items were associated with stronger and more precise neural activity.
  • The study suggests that feedback from the frontal cortex enhances memory representation in visual areas, guiding how resources are allocated based on the importance of information.

Article Abstract

To mitigate capacity limits of working memory, people allocate resources according to an item's relevance. However, the neural mechanisms supporting such a critical operation remain unknown. Here, we developed computational neuroimaging methods to decode and demix neural responses associated with multiple items in working memory with different priorities. In striate and extrastriate cortex, the gain of neural responses tracked the priority of memoranda. Higher-priority memoranda were decoded with smaller error and lower uncertainty. Moreover, these neural differences predicted behavioral differences in memory prioritization. Remarkably, trialwise variability in the magnitude of delay activity in frontal cortex predicted differences in decoded precision between low and high-priority items in visual cortex. These results suggest a model in which feedback signals broadcast from frontal cortex sculpt the gain of memory representations in visual cortex according to behavioral relevance, thus, identifying a neural mechanism for resource allocation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11100829PMC
http://dx.doi.org/10.1101/2024.05.11.593695DOI Listing

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