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Diastolic Blood Pressure Is Associated With Regional White Matter Lesion Load: The Northern Manhattan Study
Michelle R Caunca1,2,3, Marialaura Simonetto2, Ying Kuen Cheung4
1From the Division of Epidemiology and Population Health Sciences, Department of Public Health Sciences (M.R.C., R.L.S., T.R.), University of Miami, FL.
Insights
Lower diastolic blood pressure (DBP) is linked to reduced white matter hyperintensities (WMH) in specific brain regions. This finding, based on 2017 guidelines, highlights DBP
Area of Science:
- Neurology
- Cardiology
- Radiology
Background:
- Subclinical cerebrovascular disease, particularly white matter hyperintensity volume (WMHV), is a growing concern.
- Few studies have investigated the distinct roles of systolic blood pressure (SBP) and diastolic blood pressure (DBP) in relation to regional WMHV.
- The 2017 American College of Cardiology/American Heart Association Blood Pressure Guidelines provide a new framework for assessing these associations.
Purpose of the Study:
- To examine the associations between SBP and DBP, categorized by the 2017 ACC/AHA guidelines, and regional WMHV.
- To explore how these blood pressure parameters relate to WMHV in different brain areas.
- To understand the implications for subclinical cerebrovascular disease and cognitive aging.
Main Methods:
- Utilized data from the Northern Manhattan Study (NOMAS), a prospective cohort study.
- Employed a linear mixed model approach to analyze regional WMHV, accounting for correlated brain measures.
- Categorized participants based on SBP and DBP according to the 2017 ACC/AHA Blood Pressure Guidelines.
Main Results:
- Diastolic blood pressure (DBP) showed significant regional variations in its association with WMHV (P interaction <0.05).
- Lower DBP (<80 mm Hg) was associated with significantly lower WMHV in frontal, parietal, and periventricular regions compared to DBP ≥90 mm Hg.
- Systolic blood pressure (SBP) did not demonstrate a strong relationship with regional WMHV.
Conclusions:
- Lower diastolic blood pressure levels, as defined by the 2017 ACC/AHA guidelines, are associated with reduced white matter lesion load.
- The association between lower DBP and reduced WMHV is particularly notable in periventricular regions compared to temporal regions.
- These findings underscore the importance of managing DBP for mitigating subclinical cerebrovascular disease.
Abstract:
Background and Purpose- Few studies have examined the separate contributions of systolic blood pressure and diastolic blood pressures (DBP) on subclinical cerebrovascular disease, especially using the 2017 American College of Cardiology/American Heart Association Blood Pressure Guidelines. Furthermore, associations with region-specific white matter hyperintensity volume (WMHV) are underexplored. Methods- Using data from the NOMAS (Northern Manhattan Study), a prospective cohort study of stroke risk and cognitive aging, we examined associations between systolic blood pressure and DBP, defined by the 2017 American College of Cardiology/American Heart Association guidelines, with regional WMHV. We used a linear mixed model approach to account for the correlated nature of regional brain measures. Results- The analytic sample (N=1205; mean age 64±8 years) consisted of 61% women and 66% Hispanics/Latinos. DBP levels were significantly related to WMHV differentially across regions (P for interaction<0.05). Relative to those with DBP 90+ mm Hg, participants with DBP <80 mm Hg had 13% lower WMHV in the frontal lobe (95% CI, -21% to -3%), 11% lower WMHV in the parietal lobe (95% CI, -19% to -1%), 22% lower WMHV in the anterior periventricular region (95% CI, -30% to -14%), and 16% lower WMHV in the posterior periventricular region (95% CI, -24% to -6%). Participants with DBP 80 to 89 mm Hg also exhibited about 12% (95% CI, -20% to -3%) lower WMHV in the anterior periventricular region and 9% (95% CI, -18% to -0.4%) lower WMHV in the posterior periventricular region, relative to participants with DBP 90≥ mm Hg. Post hoc pairwise t tests showed that estimates for periventricular WMHV were significantly different from estimates for temporal WMHV (Holms stepdown-adjusted P<0.05). Systolic blood pressure was not strongly related to regional WMHV. Conclusions- Lower DBP levels, defined by the 2017 American College of Cardiology/American Heart Association guidelines, were related to lower white matter lesion load, especially in the periventricular regions relative to the temporal region.
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