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Published on: December 2, 2014
Association of Arterial Stiffness and Atherosclerotic Burden With Brain Structural Changes Among Japanese Men
Nazar M Azahar1,2,3, Yuichiro Yano1, Aya Kadota1,2
1NCD Epidemiology Research Center (NERC) Shiga University of Medical Science Shiga Japan.
Insights
Arterial stiffness is linked to reduced Alzheimer disease signature brain volumes, while atherosclerotic burden is associated with increased brain vascular damage in Japanese men. These findings suggest independent pathways affecting brain structure.
Area of Science:
- Cardiovascular health and neuroscience research.
- Epidemiological studies on aging and disease.
Background:
- The independent associations of arterial stiffness and atherosclerotic burden with brain structural changes are not well understood.
- Simultaneous assessment of both factors may elucidate mechanisms of brain structural alterations.
Purpose of the Study:
- To investigate the independent associations of arterial stiffness and atherosclerotic burden with brain structural changes in Japanese men.
- To explore potential distinct pathways linking vascular health to brain structure.
Main Methods:
- Analysis of data from 686 Japanese men (mean age 67.9 years) from the SESSA cohort.
- Measurement of brachial-ankle pulse wave velocity (arterial stiffness) and coronary artery calcification (atherosclerotic burden).
- Quantification of brain volumes and white matter hyperintensities using MRI, with multivariable adjustments.
Main Results:
- Higher arterial stiffness (brachial-ankle pulse wave velocity) was associated with lower Alzheimer disease signature volumes (β = -0.33, P < 0.05).
- Higher atherosclerotic burden (coronary artery calcification) was associated with increased white matter hyperintensities (β = 0.68, P < 0.05).
- No significant associations were found with total brain volume or gray matter volume.
Conclusions:
- Arterial stiffness and atherosclerotic burden may independently impact brain structure through different mechanisms.
- Findings highlight the distinct roles of arterial stiffness and atherosclerosis in neurodegeneration and cerebrovascular damage.
Abstract:
Background Little is known regarding whether arterial stiffness and atherosclerotic burden are each independently associated with brain structural changes. Simultaneous assessments of both arterial stiffness and atherosclerotic burden in associations with brain could provide insights into the mechanisms of brain structural changes. Methods and Results Using data from the SESSA (Shiga Epidemiological Study of Subclinical Atherosclerosis), we analyzed data among 686 Japanese men (mean [SD] age, 67.9 [8.4] years; range, 46-83 years) free from history of stroke and myocardial infarction. Brachial-ankle pulse wave velocity and coronary artery calcification on computed tomography scans were measured between March 2010 and August 2014. Brain volumes (total brain volume, gray matter, Alzheimer disease signature and prefrontal) and brain vascular damage (white matter hyperintensities) were quantified using brain magnetic resonance imaging from January 2012 through February 2015. In multivariable adjustment models including mean arterial pressure, when brachial-ankle pulse wave velocity and coronary artery calcification were entered into the same models, the β (95% CI) for Alzheimer disease signature volume for each 1-SD increase in brachial-ankle pulse wave velocity was -0.33 (-0.64 to -0.02), and the unstandardized β (95% CI) for white matter hyperintensities for each 1-unit increase in coronary artery calcification was 0.68 (0.05-1.32). Brachial-ankle pulse wave velocity and coronary artery calcification were not statistically significantly associated with total brain and gray matter volumes. Conclusions Among Japanese men, higher arterial stiffness was associated with lower Alzheimer disease signature volumes, whereas higher atherosclerotic burden was associated with brain vascular damage. Arterial stiffness and atherosclerotic burden may be independently associated with brain structural changes via different pathways.
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