Related Experiment Video
Updated: Mar 21, 2026

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Cerebral microbleeds topography and cerebrospinal fluid biomarkers in cognitive impairment
Sara Shams1,2, Tobias Granberg1,2, Juha Martola1,2
11 Department of Clinical Science, Intervention, and Technology, Division of Medical Imaging and Technology, Karolinska Institutet, Stockholm, Sweden.
Abstract:
Cerebral microbleeds, a marker of small vessel disease, are thought to be of importance in cognitive impairment. We aimed to study topographical distribution of cerebral microbleeds, and their involvement in disease pathophysiology, reflected by cerebrospinal fluid biomarkers; 1039 patients undergoing memory investigation underwent lumbar puncture and a brain magnetic resonance imaging scan. Cerebrospinal fluid samples were analyzed for amyloid β(Aβ)42, total tau(T-tau), tau phosphorylated at threonine 18(P-tau) and cerebrospinal fluid/serum albumin ratios. Magnetic resonance imaging sequences were evaluated for small vessel disease markers, including cerebral microbleeds, white matter hyperintensities and lacunes. Low Aβ42 levels were associated with lobar cerebral microbleeds in the whole cohort and Alzheimer's disease ( P < 0.001). High cerebrospinal fluid/serum albumin ratios were seen with increased number of cerebral microbleeds in the brainstem ( P < 0.001). There were tendencies for increased Aβ42 levels and decreased Tau levels with deep and infratentorial cerebral microbleeds ( P < 0.05). Lobar cerebral microbleeds were associated with white matter hyperintensities and lacunes ( P < 0.001). Probable cerebral amyloid angiopathy-related cerebral microbleeds were associated with low Aβ42 levels and lacunes, whereas probable cerebral amyloid angiopathy-unrelated cerebral microbleeds were associated with white matter hyperintensities ( P < 0.001). Our findings show that cerebral microbleed distribution is associated with different patterns of cerebrospinal fluid biomarkers, supporting different pathogenesis of deep/infratentorial and lobar cerebral microbleeds.
Insights
Cerebral microbleeds, linked to small vessel disease, show distinct patterns based on location. Cerebrospinal fluid biomarkers reveal different underlying causes for lobar versus deep microbleeds, impacting cognitive function.
Area of Science:
- Neurology
- Neuroimaging
- Biomarkers
Background:
- Cerebral microbleeds (CMBs) are indicators of small vessel disease and are implicated in cognitive impairment.
- Understanding the topographical distribution of CMBs and their relationship with cerebrospinal fluid (CSF) biomarkers is crucial for elucidating disease pathophysiology.
Purpose of the Study:
- To investigate the topographical distribution of cerebral microbleeds.
- To examine the association between CMB distribution and CSF biomarkers (amyloid β42, total tau, P-tau, CSF/serum albumin ratio).
- To correlate CMBs with other small vessel disease markers like white matter hyperintensities and lacunes.
Main Methods:
- 1039 patients undergoing memory investigation had lumbar puncture and brain MRI.
- CSF samples analyzed for Aβ42, T-tau, P-tau, and CSF/serum albumin ratio.
- MRI evaluated for CMBs, white matter hyperintensities, and lacunes.
Main Results:
- Low Aβ42 levels correlated with lobar CMBs (P < 0.001).
- High CSF/serum albumin ratios associated with brainstem CMBs (P < 0.001).
- Lobar CMBs linked to white matter hyperintensities and lacunes (P < 0.001).
- Probable CAA-related CMBs associated with low Aβ42 and lacunes; unrelated CMBs with white matter hyperintensities (P < 0.001).
Conclusions:
- CMB distribution is associated with distinct CSF biomarker patterns.
- Findings support different pathogenic mechanisms for deep/infratentorial and lobar CMBs.
- Topographical analysis of CMBs aids in understanding small vessel disease and cognitive impairment.

