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Updated: Jun 18, 2025

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Cerebrovascular lesion loads and accelerated brain aging: insights into the cognitive spectrum
Iman Beheshti1, Olivier Potvin2,3, Mahsa Dadar4,5
1Department of Human Anatomy and Cell Science, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, MB, Canada.
Introduction:
White matter hyperintensities (WMHs) and cerebral microbleeds are widespread among aging population and linked with cognitive deficits in mild cognitive impairment (MCI), vascular MCI (V-MCI), and Alzheimer's disease without (AD) or with a vascular component (V-AD). In this study, we aimed to investigate the association between brain age, which reflects global brain health, and cerebrovascular lesion load in the context of pathological aging in diverse forms of clinically-defined neurodegenerative conditions.
Methods:
We computed brain-predicted age difference (brain-PAD: predicted brain age minus chronological age) in the Comprehensive Assessment of Neurodegeneration and Dementia cohort of the Canadian Consortium on Neurodegeneration in Aging including 70 cognitively intact elderly (CIE), 173 MCI, 88 V-MCI, 50 AD, and 47 V-AD using T1-weighted magnetic resonance imaging (MRI) scans. We used a well-established automated methodology that leveraged fluid attenuated inversion recovery MRIs for precise quantification of WMH burden. Additionally, cerebral microbleeds were detected utilizing a validated segmentation tool based on the ResNet50 network, utilizing routine T1-weighted, T2-weighted, and T2* MRI scans.
Results:
The mean brain-PAD in the CIE cohort was around zero, whereas the four categories showed a significantly higher mean brain-PAD compared to CIE, except MCI group. A notable association trend between brain-PAD and WMH loads was observed in aging and across the spectrum of cognitive impairment due to AD, but not between brain-PAD and microbleed loads.
Discussion:
WMHs were associated with faster brain aging and should be considered as a risk factor which imperils brain health in aging and exacerbate brain abnormalities in the context of neurodegeneration of presumed AD origin. Our findings underscore the significance of novel research endeavors aimed at elucidating the etiology, prevention, and treatment of WMH in the area of brain aging.
Insights
White matter hyperintensities (WMHs) are linked to accelerated brain aging and cognitive decline in neurodegenerative diseases. This study found WMHs, but not microbleeds, associated with increased brain age across Alzheimer's disease spectrum.
Area of Science:
- Neuroimaging
- Gerontology
- Neurology
Background:
- White matter hyperintensities (WMHs) and cerebral microbleeds are common in aging and associated with cognitive deficits.
- These lesions are prevalent in mild cognitive impairment (MCI), vascular MCI (V-MCI), Alzheimer's disease (AD), and vascular AD (V-AD).
Purpose of the Study:
- To investigate the association between brain age and cerebrovascular lesion load.
- To explore brain age differences in various forms of neurodegenerative conditions.
Main Methods:
- Calculated brain-predicted age difference (brain-PAD) using MRI scans from the Canadian Consortium on Neurodegeneration in Aging cohort.
- Quantified WMH burden using FLAIR MRI and cerebral microbleeds using T1, T2, and T2* MRI scans.
Main Results:
- Cognitively intact elderly (CIE) showed a mean brain-PAD near zero.
- MCI, V-MCI, AD, and V-AD groups exhibited significantly higher mean brain-PAD than CIE, except for MCI.
- A trend linked brain-PAD with WMH load across the AD spectrum, but not with microbleed load.
Conclusions:
- WMHs are associated with accelerated brain aging and pose a risk to brain health.
- WMHs may exacerbate neurodegeneration in Alzheimer's disease.
- Further research on WMH etiology, prevention, and treatment is crucial for brain aging.
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