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Published on: April 23, 2021
Septal E/e' Ratio Is Associated With Cerebral White Matter Hyperintensity Progression in Young-Old Hypertensive
Kenichiro Nomoto1,2,3, Akihiro Hirashiki1,2, Noriko Ogama4
1Department of Cardiology, Nagoya University Graduate School of Medicine Nagoya Japan.
Insights
Left ventricular diastolic dysfunction, indicated by septal E/e' ratio, is linked to faster white matter hyperintensity progression in hypertensive older adults. This suggests cardiac changes may accelerate brain aging.
Area of Science:
- Cardiology
- Neurology
- Geriatrics
Background:
- Hypertension and brain abnormalities increase with age.
- The link between hypertension-related cardiac changes and cerebral degeneration is unclear.
- Left ventricular (LV) diastolic dysfunction may impact brain aging.
Purpose of the Study:
- To investigate the association between LV diastolic dysfunction and white matter hyperintensity (WMH) progression.
- To explore the relationship in hypertensive individuals aged 65-75 years.
Main Methods:
- Prospective longitudinal observational study of 156 hypertensive patients (65-75 years).
- Quantified WMH volume using brain MRI and assessed LV diastolic function via septal E/e' ratio.
- Analyzed WMH volume progression (∆WMH) over a mean follow-up of 4.6 years.
Main Results:
- Higher septal E/e' ratios were observed in patients with greater WMH volume progression.
- Septal E/e' was significantly positively associated with ∆WMH (β=0.457, P<0.001).
Conclusions:
- LV diastolic dysfunction is associated with accelerated WMH progression in hypertensive older adults.
- Cardiac changes may contribute to abnormal brain aging in this population.
Abstract:
The incidence of hypertension increases with age, as does that of brain abnormalities associated with cerebral pathologic and functional degeneration. Little is known about the relationship between hypertension-related cardiac changes and cerebral pathologic degeneration. We examined the relationship between left ventricular (LV) diastolic dysfunction and cerebral white matter hyperintensity (WMH) progression in young-old hypertensive patients. This single-center prospective longitudinal observational study included 156 individuals aged 65-75 years with well-controlled hypertension, normal LV contraction, and no history of symptomatic heart failure. WMH was quantified on brain magnetic resonance imaging (MRI). The primary outcome was the rate of WMH volume progression between the baseline and follow-up MRI (∆WMH). Participants were classified into tertiles on the basis of ∆WMH (small, medium, and large ∆WMH). The mean (±SD) age at recruitment was 69.6±2.8 years, and the mean follow-up period was 4.6 years. The ratio of early diastolic mitral inflow velocity to early diastolic septal mitral annulus velocity (septal E/e') was significantly higher in the large ∆WMH group than in the small and medium ∆WMH groups. On multiple regression analysis, septal E/e' was significantly positively associated with square-root-transformed ∆WMH (β=0.457, P<0.001). Septal E/e' was significantly positively associated with the rate of progression of WMH volume, suggesting that LV diastolic dysfunction is associated with the progression of abnormal brain aging.
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