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Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Adiposity is related to cerebrovascular and brain volumetry outcomes in the RUN DMC study
Ilse A C Arnoldussen1, Deborah R Gustafson2, Esther M C Leijsen1
1From the Departments of Anatomy (I.A.C.A., A.J.K.) and Neurology (E.M.C.L., F.-E.d.L.), Donders Institute for Brain, Cognition and Behaviour, and Radboud Alzheimer Center (I.A.C.A., A.J.K.), Radboud University Medical Center, Nijmegen, the Netherlands; Department of Neurology (D.R.G.), The State University of New York Downstate Health Sciences University, Brooklyn; and Department of Health and Education (D.R.G.), University of Skövde, Sweden.
Insights
Adiposity, including body mass index and waist circumference, is linked to brain changes like reduced volume and increased lesions, particularly in men. These factors may contribute to cognitive decline and dementia risk.
Area of Science:
- Neurology
- Radiology
- Metabolic Syndrome
Background:
- Cerebral small vessel disease (CSVD) and altered brain volumetry are associated with aging and vascular risk factors.
- Adiposity metrics like BMI and WC are prevalent and linked to various health outcomes.
Purpose of the Study:
- To investigate the association between adiposity predictors and CSVD components and brain volumetry.
- To examine sex-specific differences in these associations over a 9-year period.
Main Methods:
- Utilized data from 503 adults (≥50 years) in the Radboud University Nijmegen Diffusion Tensor and Magnetic Resonance Imaging Cohort (RUN DMC).
- Assessed body mass index (BMI), waist circumference (WC), adipokines, and brain imaging outcomes (CSVD components, volumes) at baseline and 9-year follow-up.
Main Results:
- Higher BMI, WC, and leptin correlated with lower gray matter and total brain volumes in men cross-sectionally.
- Obesity was linked to lacunes and microbleeds in men, and lacunes in women. A high WC predicted decreasing hippocampal volume and increasing white matter hyperintensities longitudinally.
Conclusions:
- Adiposity predictors show differential associations with brain health outcomes based on sex.
- Higher adiposity is associated with a vascular-neurodegenerative spectrum in individuals at risk for cognitive impairment and dementia.
Objective:
Adiposity predictors, body mass index (BMI), waist circumference (WC), and blood leptin and total adiponectin levels were associated with components of cerebral small vessel disease (CSVD) and brain volumetry in 503 adults with CSVD who were ≥50 years of age and enrolled in the Radboud University Nijmegen Diffusion Tensor and Magnetic Resonance Imaging Cohort (RUN DMC).
Methods:
RUN DMC participants were followed up for 9 years (2006-2015). BMI, WC, brain imaging, and dementia diagnoses were evaluated at baseline and follow-up. Adipokines were measured at baseline. Brain imaging outcomes included CSVD components, white matter hyperintensities, lacunes, microbleeds, gray and white matter, hippocampal, total brain, and intracranial volumes.
Results:
Cross-sectionally among men at baseline, higher BMI, WC, and leptin were associated with lower gray matter and total brain volumes, and higher BMI and WC were associated with lower hippocampal volume. At follow-up 9 years later, higher BMI was cross-sectionally associated with lower gray matter volume, and an obese WC (>102 cm) was protective for ≥1 lacune or ≥1 microbleed in men. In women, increasing BMI and overweight or obesity (BMI ≥25 kg/m2 or WC >88 cm) were associated with ≥1 lacune. Longitudinally, over 9 years, a baseline obese WC was associated with decreasing hippocampal volume, particularly in men, and increasing white matter hyperintensity volume in women and men.
Conclusions:
Anthropometric and metabolic adiposity predictors were differentially associated with CSVD components and brain volumetry outcomes by sex. Higher adiposity is associated with a vascular-neurodegenerative spectrum among adults at risk for vascular forms of cognitive impairment and dementias.
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