Abnormal brain diffusivity in participants with persistent neuropsychiatric symptoms after COVID-19

  • Liang H
  • Ernst T
  • Oishi K
  • et al.
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Abstract

Objectives: We aimed to compare brain white matter integrity in participants with post-COVID-19 conditions (PCC) and healthy controls. Methods: We compared cognitive performance (NIH Toolbox ®), psychiatric symptoms and diffusion tensor imaging (DTI) metrics between 23 PCC participants and 24 controls. Fractional anisotropy (FA), axial (AD), radial (RD), and mean (MD) diffusivities were measured in 9 white matter tracts and 6 subcortical regions using MRICloud. Results: Compared to controls, PCC had similar cogni-tive performance, but greater psychiatric symptoms and perceived stress, as well as higher FA and lower dif-fusivities in multiple white matter tracts (ANCOVA-p-values≤0.001-0.048). Amongst women, PCC had higher left amygdala-MD than controls (sex-by-PCC p=0.006). Regardless of COVID-19 history, higher sagittal strata-FA predicted greater fatigue (r=0.48-0.52, p<0.001) in all participants , and higher left amygdala-MD predicted greater fatigue (r=0.61, p<0.001) and anxiety (r=0.69, p<0.001) in women, and higher perceived stress (r=0.45, p=0.002) for all participants. Conclusions: Microstructural abnormalities are evident in PCC participants averaged six months after COVID-19. The restricted diffusivity (with reduced MD) and higher FA suggest enhanced myelination or increased magnetic susceptibility from iron deposition, as seen in stress conditions. The higher amygdala-MD in female PCC suggests persistent neu-roinflammation, which might contribute to their fatigue, anxiety, and perceived stress.

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Liang, H., Ernst, T., Oishi, K., Ryan, M. C., Herskovits, E., Cunningham, E., … Chang, L. (2023). Abnormal brain diffusivity in participants with persistent neuropsychiatric symptoms after COVID-19. NeuroImmune Pharmacology and Therapeutics, 0(0). https://doi.org/10.1515/nipt-2022-0016

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