SARS-CoV-2 is associated with changes in brain structure in UK Biobank

SARS-CoV-2 связан с изменениями структуры головного мозга в UK Biobank
Rory Collins, Naomi E. Allen, Paul M. Matthews, Thomas E. Nichols, Anderson M. Winkler, Stephen M. Smith, Jesper Andersson, Paul J. McCarthy, Karla L. Miller, Saâd Jbabdi, Fidel Alfaro‐Almagro, Ludovica Griffanti, Gwenaëlle Douaud, Chaoyue Wang, Eugene Duff, Soojin Lee, Christoph Arthofer, Frederik Lange, Bernd Taschler, Peter Keating
2022-03-07

SARS-CoV-2 infectionUK Biobankbrain structuregrey matter changesmagnetic resonance imaging
. However, it remains unknown whether the impact of SARS-CoV-2 infection can be detected in milder cases, and whether this can reveal possible mechanisms contributing to brain pathology. Here we investigated brain changes in 785 participants of UK Biobank (aged 51-81 years) who were imaged twice using magnetic resonance imaging, including 401 cases who tested positive for infection with SARS-CoV-2 between their two scans-with 141 days on average separating their diagnosis and the second scan-as well as 384 controls. The availability of pre-infection imaging data reduces the likelihood of pre-existing risk factors being misinterpreted as disease effects. We identified significant longitudinal effects when comparing the two groups, including (1) a greater reduction in grey matter thickness and tissue contrast in the orbitofrontal cortex and parahippocampal gyrus; (2) greater changes in markers of tissue damage in regions that are functionally connected to the primary olfactory cortex; and (3) a greater reduction in global brain size in the SARS-CoV-2 cases. The participants who were infected with SARS-CoV-2 also showed on average a greater cognitive decline between the two time points. Importantly, these imaging and cognitive longitudinal effects were still observed after excluding the 15 patients who had been hospitalised. These mainly limbic brain imaging results may be the in vivo hallmarks of a degenerative spread of the disease through olfactory pathways, of neuroinflammatory events, or of the loss of sensory input due to anosmia. Whether this deleterious effect can be partially reversed, or whether these effects will persist in the long term, remains to be investigated with additional follow-up.
1
Among 785 UK Biobank participants with repeated MRI, SARS-CoV-2 infection was associated with significant longitudinal changes in brain structure compared with controls.
2
Infected participants experienced greater cognitive decline between scans, with imaging and cognitive effects remaining after excluding hospitalized patients.
3
Infected participants showed greater reductions in grey-matter thickness and tissue contrast in the orbitofrontal cortex and parahippocampal gyrus.
4
SARS-CoV-2 cases exhibited greater tissue-damage changes in regions functionally connected to the primary olfactory cortex and greater global brain-volume reduction.
5
The predominantly limbic changes may reflect disease spread through olfactory pathways, neuroinflammation, or sensory-input loss from anosmia; their long-term reversibility remains unknown.

Longitudinal brain structure and cognitive function in UK Biobank participants infected with SARS-CoV-2

SARS-CoV-2-associated longitudinal changes in regional grey matter, tissue damage markers, global brain size, and cognitive performance, including effects in non-hospitalized mild cases

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Publication Date
2022-03-07
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Authors
Rory Collins
Naomi E. Allen
Paul M. Matthews
Thomas E. Nichols
Anderson M. Winkler
Stephen M. Smith
Jesper Andersson
Paul J. McCarthy
Karla L. Miller
Saâd Jbabdi
Fidel Alfaro‐Almagro
Ludovica Griffanti
Gwenaëlle Douaud
Chaoyue Wang
Eugene Duff
Soojin Lee
Christoph Arthofer
Frederik Lange
Bernd Taschler
Peter Keating
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