Related Experiment Video
Updated: Jul 28, 2025

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
A bibliometric analysis of cerebral microbleeds and cognitive impairment
Background And Objectives:
Cerebral microbleeds (CMBs) are imaging markers for small cerebral vascular diseases, which can accumulate and impact the corresponding brain networks. CMBs can affect cognitive function, including executive function, information processing speed, and visuospatial memory. Bibliometrics is a scientific and innovative method that can analyze and visualize the scientific field quantitatively. In this study, we aimed to use bibliometric analysis to demonstrate the relationship and mechanisms between CMBs and cognitive impairment. Furthermore, we reviewed the relationship between CMBs and different cognitive disorders. The use of bibliometrics can help further clarify this relationship.
Methods:
We retrieved articles on CMBs and cognitive impairment from the Web of Science Core Collection. The keywords (such as stroke, dementia, and cerebral amyloid angiopathy), authors, countries, institutions and journals, in the field were visually analyzed using VOSviewer software and bibliometric websites.
Results:
This bibliometric analysis reveals the related trends of CMBs in the field of cognitive impairment. CMBs, along with other small vascular lesions, constitute the basis of cognitive impairment, and studying CMBs is essential to understand the mechanisms underlying cognitive impairment.
Conclusion:
This bibliometric analysis reveals a strong link between CMBs and cognitive impairment-related diseases and that specific brain networks were affected by CMBs. This provides further insights into the possible mechanisms and causes of CMBs and cognitive impairment. The direct and indirect damage (such as oxidative stress and neuroinflammation) to the brain caused by CMBs, destruction of the frontal-subcortical circuits, elevated Cystatin C levels, and iron deposition are involved in the occurrence and development of cognitive impairment. CMBs may be a potential marker for detecting, quantifying, and predicting cognitive impairment.
Insights
Cerebral microbleeds (CMBs) are linked to cognitive impairment. This bibliometric analysis highlights their role in brain network damage and potential as a marker for cognitive decline.
Area of Science:
- Neurology
- Neuroscience
- Medical Imaging
Background:
- Cerebral microbleeds (CMBs) are indicators of small vessel disease.
- CMBs can accumulate, affecting brain networks and cognitive functions like executive function and memory.
- Understanding the link between CMBs and cognitive impairment is crucial.
Purpose of the Study:
- To quantitatively analyze the relationship and mechanisms between CMBs and cognitive impairment using bibliometrics.
- To review the association between CMBs and various cognitive disorders.
- To clarify the role of CMBs in cognitive decline.
Main Methods:
- Bibliometric analysis of articles on CMBs and cognitive impairment.
- Data sourced from the Web of Science Core Collection.
- Keyword, author, country, institution, and journal analysis using VOSviewer and bibliometric websites.
Main Results:
- Bibliometric analysis revealed trends in CMB research related to cognitive impairment.
- CMBs, alongside other small vascular lesions, are fundamental to cognitive impairment.
- Studying CMBs is essential for understanding cognitive impairment mechanisms.
Conclusions:
- A strong association exists between CMBs and cognitive impairment-related diseases, impacting specific brain networks.
- Mechanisms include direct/indirect brain damage (oxidative stress, neuroinflammation), frontal-subcortical circuit destruction, elevated Cystatin C, and iron deposition.
- CMBs show potential as markers for detecting, quantifying, and predicting cognitive impairment.
More Related Videos
06:39Sub-acute Cerebral Microhemorrhages Induced by Lipopolysaccharide Injection in Rats
Published on: October 17, 2018
12:50Lesion Explorer: A Video-guided, Standardized Protocol for Accurate and Reliable MRI-derived Volumetrics in Alzheimer's Disease and Normal Elderly
Published on: April 14, 2014