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Reduced brain network communication in long COVID patients with high brain inflammation

Updated

Abstract

22% of participants showed neuroinflammation after a SARS-CoV-2 infection.

  • Lower connectivity within the visual-peripheral and dorsal-attention networks is associated with neuroinflammation.
  • Reduced connectivity in the visual-peripheral and default mode networks is linked to persistent neurocognitive complaints (NCC).
  • A significant interaction effect indicates decreased functional connectivity in a large cerebellar area with higher neuroinflammation levels in those with NCC.
  • Changes in connectivity between the thalamus and somatomotor network and the brainstem and control network were observed in individuals with either NCC or neuroinflammation.
  • Thalamic-somatomotor connectivity changes were primarily driven by NCC, while brainstem-control changes were influenced by neuroinflammation.

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Full Text

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Funding

Competing interests

Declaration of competing interest RB received a research grant from Siemens Healthineers. FB is steering committee or Data Safety Monitoring Board member for Biogen, Merck, Eisai and Prothena. FB is advisory board member for Combinostics, Scottish Brain Sciences, and Alzheimer Europe. FB is consultant for Roche, Celltrion, Rewind Therapeutics, Merck, and Bracco. FB has research agreements with ADDI, Merck, Biogen, GE Healthcare, and Roche. FB is co-founder and shareholder of Queen Square Analytics LTD. No other potential competing interests relevant to this article was reported.
PubMed

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