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March 11, 2020Journal of the American Heart Association25 citationsOpen Access

Aortic Stiffness and White Matter Microstructural Integrity Assessed by Diffusion Tensor Imaging: The ARIC‐NCS

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JWJingkai WeiPreventive CardiologyPPPriya PaltaCross-Cutting CardiologyMMMichelle L. MeyerPreventive Cardiology

Key Result

Higher aortic stiffness (per 1-m/s increase in pulse wave velocity) was associated with lower overall fractional anisotropy (β=-0.03; 95% CI, -0.05 to -0.02) and higher overall mean diffusivity.

Study Design

Type

Cross-Sectional (n=1,484)

Multicenter

Yes

Structured PICO

Does aortic stiffness associate with cerebral white matter microstructural integrity in older adults?

P
Population
1,484 older adults (mean age 76 years) from the ARIC-NCS cohort evaluated in a cross-sectional study of aortic stiffness and white matter integrity.
E
Exposure
Aortic stiffness measured as carotid-femoral pulse wave velocity
O
Outcome
Cerebral white matter microstructural integrity measured as fractional anisotropy and mean diffusivity using diffusion tensor imagingsurrogate

Higher aortic stiffness is associated with lower cerebral white matter microstructural integrity in older adults, suggesting a potential target for preventing cerebral small-vessel disease.

Main Result

Effect estimate: β=-0.03 (95% CI -0.05 to -0.02)

Abstract

Background Changes in white matter microstructural integrity are detectable before appearance of white matter lesions on magnetic resonance imaging as a manifestation of cerebral small-vessel disease. The information relating poor white matter microstructural integrity to aortic stiffness, a hallmark of aging, is limited. We aimed to examine the association between aortic stiffness and white matter microstructural integrity among older adults. Methods and Results We conducted a cross-sectional study to examine the association between aortic stiffness and white matter microstructural integrity among 1484 men and women (mean age, 76 years) at the 2011 to 2013 examination of the ARIC-NCS (Atherosclerosis Risk in Communities Neurocognitive Study). Aortic stiffness was measured as carotid-femoral pulse wave velocity. Cerebral white matter microstructural integrity was measured as fractional anisotropy and mean diffusivity using diffusion tensor imaging. Multivariable linear regression was used to examine the associations of carotid-femoral pulse wave velocity with fractional anisotropy and mean diffusivity of the overall cerebrum and at regions of interest. Each 1-m/s higher carotid-femoral pulse wave velocity was associated with lower overall fractional anisotropy (β=-0.03; 95% CI, -0.05 to -0.02) and higher overall mean diffusivity (β=0.03; 95% CI, 0.02-0.04). High carotid-femoral pulse wave velocity (upper 25th percentile) was associated with lower fractional anisotropy (β=-0.40; 95% CI, -0.61 to -0.20) and higher overall mean diffusivity (β=0.27; 95% CI, 0.10-0.43). Similar associations were observed at individual regions of interest. Conclusions High aortic stiffness is associated with low cerebral white matter microstructural integrity among older adults. Aortic stiffness may serve as a target for the prevention of poor cerebral white matter microstructural integrity.

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Cite This Study

Wei et al. (2020) conducted a cross-sectional in Older adults (n=1,484). Aortic stiffness (carotid-femoral pulse wave velocity) vs. Lower aortic stiffness was evaluated on Overall fractional anisotropy (β=-0.03, 95% CI -0.05 to -0.02). Higher aortic stiffness (per 1-m/s increase in pulse wave velocity) was associated with lower overall fractional anisotropy (β=-0.03; 95% CI, -0.05 to -0.02) and higher overall mean diffusivity.

synapsesocial.com/papers/6a677f5dc8722e53b0d48bbbhttps://doi.org/10.1161/jaha.119.014868
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