Mapping the Olfactory Brain: A Systematic Review of Structural and Functional Magnetic Resonance Imaging Changes Following COVID-19 Smell Loss

Картирование обонятельного мозга: систематический обзор структурных и функциональных изменений по данным магнитно-резонансной томографии после утраты обоняния при COVID-19
Hanani Abdul Manan, Rafaela de Jesus, Divesh Thaploo, Thomas Hummel
2025-06-27

COVID-19 olfactory dysfunctiondiffusion tensor imagingfunctional connectivityolfactory bulb volumeolfactory sulcus depth
BACKGROUND: Olfactory dysfunction (OD)-including anosmia and hyposmia-is a common and often persistent outcome of viral infections. This systematic review consolidates findings from structural and functional MRI studies to explore how COVID-19 SARS-CoV-2-induced smell loss alters the brain. Considerable heterogeneity was observed across studies, influenced by differences in methodology, population characteristics, imaging timelines, and OD classification. METHODS: Following PRISMA guidelines, we conducted a systematic search of PubMed/MEDLINE, Scopus, and Web of Science to identify MRI-based studies examining COVID-19's SARS-CoV-2 OD. Twenty-four studies were included and categorized based on imaging focus: (1) olfactory bulb (OB), (2) olfactory sulcus (OS), (3) grey and white matter changes, (4) task-based brain activation, and (5) resting-state functional connectivity. Demographic and imaging data were extracted and analyzed accordingly. RESULTS: Structural imaging revealed consistent reductions in olfactory bulb volume (OBV) and olfactory sulcus depth (OSD), especially among individuals with OD persisting beyond three months, suggestive of inflammation and neurodegeneration in olfactory-associated regions like the orbitofrontal cortex and thalamus. Functional MRI studies showed increased connectivity in early-stage OD within regions such as the piriform and orbitofrontal cortices, possibly reflecting compensatory activity. In contrast, prolonged OD was associated with reduced activation and diminished connectivity, indicating a decline in olfactory processing capacity. Disruptions in the default mode network (DMN) and limbic areas further point to secondary cognitive and emotional effects. Diffusion tensor imaging (DTI) findings-such as decreased fractional anisotropy (FA) and increased mean diffusivity (MD)-highlight white matter microstructural compromise in individuals with long-term OD. CONCLUSIONS: COVID-19's SARS-CoV-2 olfactory dysfunction is associated with a range of cerebral alterations that evolve with the duration and severity of smell loss. Persistent dysfunction correlates with greater neural damage, underscoring the need for longitudinal neuroimaging studies to better understand recovery dynamics and guide therapeutic strategies.
1
Early-stage olfactory dysfunction showed increased connectivity in piriform and orbitofrontal cortices, potentially reflecting compensatory activity, whereas prolonged dysfunction involved reduced activation and connectivity.
2
Long-term olfactory dysfunction was associated with decreased fractional anisotropy and increased mean diffusivity, indicating white matter microstructural compromise, alongside disruptions in default mode and limbic networks.
3
Persistent olfactory dysfunction, particularly beyond three months, was consistently associated with reduced olfactory bulb volume and olfactory sulcus depth.
4
Structural abnormalities implicated olfactory-related regions, including the orbitofrontal cortex and thalamus, suggesting inflammation and neurodegenerative processes.
5
The systematic review included 24 MRI studies examining structural and functional brain changes associated with COVID-19-related olfactory dysfunction.

The brain and olfactory neural structures of individuals with COVID-19-associated olfactory dysfunction

Structural, functional, and microstructural MRI changes associated with the duration and severity of COVID-19-related smell loss

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2025-06-27
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Hanani Abdul Manan
Rafaela de Jesus
Divesh Thaploo
Thomas Hummel
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