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February 9, 2021Journal of Alzheimer s Disease14 citations

Arterial Stiffness Is Associated with White Matter Disruption and Cognitive Impairment: A Community-Based Cohort Study

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FHFei HanFZFei‐Fei ZhaiMLMingli Li

Key Result

Increased arterial stiffness (baPWV) was significantly associated with worse performance on the MMSE (β= -0.093, p=0.011) and lower white matter integrity (β= -0.118, p<0.001).

Study Design

Type

Cross-Sectional (n=952)

Structured PICO

Is arterial stiffness associated with white matter disruption and cognitive impairment in community-dwelling adults?

P
Population
952 community-dwelling subjects (mean age 55.5 years) who underwent diffusion tensor imaging and brachial-ankle pulse wave velocity measurement.
E
Exposure
Arterial stiffness measured by brachial-ankle pulse wave velocity (baPWV)
O
Outcome
White matter integrity (measured by diffusion tensor imaging) and global cognitive function (measured by MMSE)surrogate

Arterial stiffness is associated with cognitive decline, an effect that is partially mediated by reduced white matter integrity.

Main Result

Effect estimate: β= -0.093

p-value: p=0.011

Abstract

BACKGROUND: Mechanisms through which arterial stiffness impacts cognitive function are crucial for devising better strategies to prevent cognitive decline. OBJECTIVE: To examine the associations of arterial stiffness with white matter integrity and cognition in community dwellings, and to investigate whether white matter injury was the intermediate of the associations between arterial stiffness and cognition. METHODS: This study was a cross-sectional analysis on 952 subjects (aged 55.5±9.1 years) who underwent diffusion tensor imaging and measurement of brachial-ankle pulse wave velocity (baPWV). Both linear regression and tract-based spatial statistics were used to investigate the association between baPWV and white matter integrity. The association between baPWV and global cognitive function, measured as the mini-mental state examination (MMSE) was evaluated. Mediation analysis was performed to assess the influence of white matter integrity on the association of baPWV with MMSE. RESULTS: Increased baPWV was significantly associated with lower mean global fractional anisotropy (β= -0.118, p < 0.001), higher mean diffusivity (β= 0.161, p < 0.001), axial diffusivity (β= 0.160, p < 0.001), and radial diffusivity (β= 0.147, p < 0.001) after adjustment of age, sex, and hypertension, which were measures having a direct effect on arterial stiffness and white matter integrity. After adjustment of age, sex, education, apolipoprotein E ɛ4, cardiovascular risk factors, and brain atrophy, we found an association of increased baPWV with worse performance on MMSE (β= -0.093, p = 0.011). White matter disruption partially mediated the effect of baPWV on MMSE. CONCLUSION: Arterial stiffness is associated with white matter disruption and cognitive decline. Reduced white matter integrity partially explained the effect of arterial stiffness on cognition.

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Cite This Study

Han et al. (2021) conducted a cross-sectional in Cognitive impairment / White matter disruption (n=952). Arterial stiffness (increased baPWV) was evaluated on Global cognitive function (MMSE) (β= -0.093, p=0.011). Increased arterial stiffness (baPWV) was significantly associated with worse performance on the MMSE (β= -0.093, p=0.011) and lower white matter integrity (β= -0.118, p<0.001).

synapsesocial.com/papers/6a706b502163a0a01bc4a2eehttps://doi.org/10.3233/jad-201424
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