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Neuronal functional connectivity is impaired in a layer dependent manner near the chronically implanted microelectrodes.

Keying ChenAdam ForrestGuillermo González-BurgosTakashi Daniel Yoshida Kozai
Published in: bioRxiv : the preprint server for biology (2023)
This study provides a detailed characterization of network connectivity dysfunction over long-term microelectrode implantation periods. This new knowledge could contribute to the development of targeted therapeutic strategies aimed at improving the health of the tissue surrounding brain implants and potentially inform engineering of adaptive decoders as the FBR progresses. Our study's understanding of the dynamic changes in the functional network over time opens the door to developing interventions for improving the long-term stability and performance of intracortical microelectrodes.
Keyphrases
  • functional connectivity
  • resting state
  • healthcare
  • mental health
  • physical activity
  • multiple sclerosis
  • drug delivery
  • climate change
  • social media