Human intracranial correlates of dynamic coding in auditory working memory

Journal: bioRxiv
Published Date:

Abstract

Working memory (WM), the human brain's system for maintaining and manipulating information over short timescales, is critical for goal-directed behavior. Classic neurophysiological models, which emphasize persistent delay activity, are being challenged by an idea that WM is maintained through dynamic and activity-silent mechanisms, where the memory trace is preserved by transient changes in the connections between neurons. To date, human evidence for this alternative model has been limited to non-invasive studies. Here, leveraging high-resolution intracranial stereo-EEG with advanced machine learning decoding techniques, we investigate neuronal mechanisms of human auditory WM. Neuronal activity is quantified as broadband high frequency activity (70-190 Hz), a correlate of neuronal firing activity. Our multivariate pattern analyses, validated via robust non-parametric permutation testing, show that WM content is represented in multiple brain regions, exhibiting dynamic rather than persistent delay activity. Crucially, by using task-irrelevant sounds to probe latent mnemonic states, we provide the first human intracranial evidence of activity silent WM maintenance in a local sensory network.

Authors

  • Uluc
  • I.; Paulk
  • A. C.; Bush
  • A.; Gumenyuk
  • V.; Peled
  • N.; Kotlarz
  • P. L.; Lankinen
  • K.; Mamashli
  • F.; Matsuda
  • N.; Cosgrove
  • R. G.; Richardson
  • M.; Stufflebeam
  • S. M.; Cash
  • S. S.; Ahveninen
  • J.

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