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Published on: November 29, 2018
Association of Either Left Ventricular Hypertrophy or Diastolic Dysfunction With 24-Hour Central and Peripheral Blood
Pedro Blanch1, Pedro Armario1, Anna Oliveras2
1Cardiovascular Disease Area Department, Hospital Moisès Broggi, Barcelona, Spain.
Insights
Central blood pressure (BP) did not show a significant advantage over peripheral BP in predicting hypertensive heart disease in this study. Further research with larger sample sizes is needed to confirm these findings on central BP measurement.
Area of Science:
- Cardiology
- Hypertension Research
- Diagnostic Imaging
Background:
- Central blood pressure (BP) is a superior indicator of hypertension-related risks compared to peripheral BP.
- Hypertension can lead to cardiac alterations such as left ventricular hypertrophy (LVH) and diastolic dysfunction (DD).
Purpose of the Study:
- To compare the association of 24-hour central BP with LVH and DD against 24-hour peripheral BP.
- To determine if central BP measurements offer better prediction of hypertensive cardiac changes.
Main Methods:
- A cross-sectional study of 208 hypertensive patients (34% women, mean age 57 years).
- 24-hour central and peripheral BP were measured using the Mobil-O-Graph device.
- Echocardiography-Doppler was used to define LVH (left atrium volume ≥34 ml/m2) and DD (septal e' velocity <8 cm/s or lateral e' velocity <10 cm/s).
Main Results:
- 37% of patients had LVH and 58% had DD.
- Both central and peripheral BP estimates were associated with LVH or DD, with ambulatory values showing higher odds ratios.
- No statistically significant superiority of central BP over peripheral BP was found in predicting LVH or DD.
Conclusions:
- The study did not find a significant advantage of 24-hour central BP over peripheral BP in identifying hypertensive cardiac alterations.
- The findings suggest that routine 24-hour central BP measurement's role requires further investigation with larger sample sizes.
Background:
Central blood pressure (BP) is considered as a better estimator of hypertension-associated risks than peripheral BP. We aimed to evaluate the association of 24-hour central BP, in comparison with 24-hour peripheral BP, with the presence of left ventricular hypertrophy (LVH), or diastolic dysfunction (DD).
Methods:
The cross-sectional study consisted of 208 hypertensive patients, aged 57 ± 12 years, of which 34% were women. Office and 24-hour central and peripheral BP were measured by the oscillometric Mobil-O-Graph device. We performed echocardiography-Doppler measurements to calculate LVH and DD, defined as left atrium volume ≥34 ml/m2 or septal e' velocity <8 cm/s or lateral e' velocity <10 cm/s.
Results:
Seventy-seven patients (37%) had LVH, and 110 patients (58%) had DD. Systolic and pulse BP estimates (office, 24-hour, daytime, and nighttime) were associated with the presence of LVH or DD, after adjustment for age, gender, and antihypertensive treatment, with higher odds ratios for ambulatory-derived values. The comparison between central and peripheral BP estimates did not reveal a statistically significant superiority of the former neither in multiple regression models with simultaneous adjustments nor in the comparison of areas under receiver-operating curves. Correlation coefficients of BP estimates with left ventricular mass, although numerically higher for central BP, did not significantly differ between central and peripheral BP.
Conclusions:
We have not found a significant better association of 24-hour central over peripheral BP, with hypertensive cardiac alterations, although due to the sample size, these results require further confirmation in order to assess the possible role of routine 24-hour central BP measurement.
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