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Stimulation modulates gene-linked cell assemblies in the human brain

Research Medical/Healthcare AI

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TL;DR - This Nature study presents an ex vivo human-cortex framework showing that stimulation reorganizes neural cell assemblies and activates cell-type-specific gene-regulatory programs. It could inform more precisely targeted neuromodulatory therapies.

  • Links stimulation parameters to both circuit-level and transcriptional responses.
  • Identifies gene-linked neural assemblies that change with cortical stimulation.
  • Reveals cell-type-specific regulatory responses to stimulation.
  • Provides a platform for designing targeted neuromodulation strategies.

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Stimulation modulates gene-linked cell assemblies in the human brain

Nature Haley Moore, Mantre Dehnad, Anne Freelin, Bryan Granger, Suganya Subramanian, Tjitse van der Molen, Ashwinikumar Kulkarni, Stefano Berto, Bradley C. Lega, Genevieve Konopka 2026-08-05 doi:10.1038/s41586-026-10879-9
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Providers: Hugging Face · N/A OpenAlex · Citations 0 Publisher · N/A Semantic Scholar · N/A X · N/A Fetched 2026-09-03 14:32:10.241714 UTC

TL;DR - This Nature study presents an ex vivo human-cortex framework showing that stimulation reorganizes neural cell assemblies and activates cell-type-specific gene-regulatory programs. It could inform more precisely targeted neuromodulatory therapies.

  • Links stimulation parameters to both circuit-level and transcriptional responses.
  • Identifies gene-linked neural assemblies that change with cortical stimulation.
  • Reveals cell-type-specific regulatory responses to stimulation.
  • Provides a platform for designing targeted neuromodulation strategies.
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