A cognitive architecture for Long COVID: the interplay of brain fog, fatigue, attention and memory, 2026, Higgins et al.

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A cognitive architecture for Long COVID: the interplay of brain fog, fatigue, attention and memory

Higgins, Darragh; Zhao, Sijia; Husain, Masud; Denno, Peter; Hellyer, Peter J; Trender, William; Atchison, Christina J; Davies, Bethan; Cooper, Emily; Elliott, Joshua; Whitaker, Matthew; Di Gravio, Chiara; Chadeau-Hyam, Marc; Elliott, Paul; Ward, Helen; Hampshire, Adam

Abstract
The cognitive mechanisms underlying post-acute COVID-19 sequelae (‘Long COVID’) remain poorly defined. While deficits in memory and executive function are well-documented, it is unclear whether these arise from primary neural dysfunction or are secondary consequences of fatigue-related factors.

Here, we addressed this in a community cohort (N = 24 095) using a custom cognitive battery to dissect the interplay between sustained attention, fatigue, and memory. Among this subset, 11 925 participants had previously tested positive for COVID-19, and 548 reported ongoing symptoms consistent with Long COVID.

Path analysis (structural equation modelling) was used to evaluate competing mechanistic models linking COVID-19-related features (e.g. duration of symptoms, severity of illness) with objective performance and subjective cognitive symptoms.

Participants with persistent symptoms post-COVID-19 (unresolved beyond 12 weeks) showed significant deficits in sustained attention compared to non-infected individuals. Path models revealed complex relationships underlying these deficits. Unlike models of mental health disorders and general ageing, where cognitive performance was largely mediated by relationships to fatigue, the final Long COVID model represented a hybrid mechanism: COVID-19 features were associated with direct, independent effects on attention and memory, while simultaneously relating lower cognitive performance to on-task fatigue build-up.

Findings also suggest that ‘brain fog’ reflects a distinct neurocognitive vulnerability associated with fatigue and reduced performance on sustained attention and memory tasks.

These findings accord with the hypothesis that Long COVID has a heterogeneous, multi-faceted impact on cognitive function, with higher-order processes such as memory being particularly vulnerable due to their dependence on foundational attention and motivation processes.

Graphical Abstract

Graphical abstract showing study results where sustained attention performance is weaker in Long COVID patients and is also associated with COVID-19 severity and subjective symptoms, as well as memory performance.


Web | DOI | PMC | PDF | Brain Communications | Open Access
 
Subjective reports of brain fog, a frequent long-COVID symptom, were directly associated with tiredness and indirectly related to cognitive performance. This evidence suggests that brain fog may be characterized as a fatigue-driven symptom which impacts attentional performance and by extension disrupts encoding of memories for attended stimuli. This also indicates that brain fog is not an isolated memory issue, consistent with findings from other post-COVID-19 cohorts, instead suggesting that cognitive complaints in Long COVID may be partly explained both by arousal dysregulation and issues with attentional vigilance.

While subjective fatigue symptoms and objective cognitive performance were related, the strengths of these associations were modest, consistent with prior findings. This implies that subjective cognitive complaints are shaped both by interoceptive factors, in this case reports of fatigue and brain fog, and by measurable cognitive performance.
 
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