Relation of left ventricular diastolic properties to systolic function in arterial hypertension
G de Simone1, R Greco, G Mureddu
1Department of Clinical and Experimental Medicine, Federico II University Hospital, Naples, Italy. simogi@unina.it
Insights
Diastolic dysfunction in hypertension can appear before systolic dysfunction. Impaired midwall shortening (MS) is linked to delayed left ventricular (LV) relaxation, even with normal ejection fraction (EF).
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Echocardiography
Background:
- Left ventricular (LV) diastolic dysfunction is common in hypertension.
- The relationship between diastolic dysfunction and systolic function in hypertensive patients is not fully understood.
Purpose of the Study:
- To investigate whether left ventricular (LV) diastolic dysfunction is independent of systolic dysfunction in hypertensive patients.
- To determine the association between midwall shortening (MS) and isovolumic relaxation time (IVRT) in hypertension.
Main Methods:
- Doppler echocardiography was used to study 159 hypertensive patients and 165 normotensive controls.
- Ejection fraction (EF), midwall shortening (MS), isovolumic relaxation time (IVRT), and deceleration times were measured.
- Multivariate analysis was performed to assess independent relationships.
Main Results:
- Hypertensive patients showed higher EF but lower MS compared to normotensive subjects, even after adjustments.
- Isovolumic relaxation time (IVRT) and deceleration times were significantly longer in hypertensive patients.
- IVRT was independently related to impaired MS, not EF, and remained elevated even after controlling for LV geometry and load.
Conclusions:
- Doppler indices of delayed LV relaxation are present in hypertension, independent of systolic function.
- Impaired midwall shortening (MS) is independently associated with delayed LV relaxation.
- Diastolic abnormalities can precede systolic dysfunction, even when measured at the midwall level.
Background:
It is unclear whether impairment of left ventricular (LV) diastolic characteristics is independent of systolic dysfunction.
Methods And Results:
To address this issue, 159 consecutive hypertensive patients (44+/-11 years, 78 obese, 96 women) and 165 normotensive subjects (32+/-11 years, 84 obese, 110 women) were studied with the use of Doppler echocardiography. After adjustment for age, body mass index (BMI), and sex, we found that ejection fraction (EF; M-mode, z-derived) was higher in hypertensive (66. 6+/-5.2%) than in normotensive (63.9+/-4.4%, P<0.0001) subjects, whereas midwall shortening (MS) was lower (hypertensive patients 16. 9+/-2.0%, normotensive subjects 17.8+/-2.2%, P<0.02), even after correction for end-systolic wall stress (P<0.05). Isovolumic relaxation time (IVRT) was greater in hypertensive patients (103+/-14 ms) than in normotensive subjects (78+/-19 ms), as was deceleration time of E velocity and peak A velocity (all P<0.0001). In multivariate analysis, IVRT was unrelated to EF, but a negative relation was found with MS (P<0.001), independent of age, BMI, presence of arterial hypertension, LV geometry, and load (multiple R(2)=0.58). For comparable age, sex distribution, BMI, and blood pressure values, hypertensive patients with lower afterload-adjusted MS exhibited longer IVRT than patients with normal MS (P<0.005). However, IVRT remained higher than in normotensive control subjects after control for LV geometry and load.
Conclusions:
Doppler indices of delayed LV relaxation can be detected in the presence of normal or supranormal EF but are independently related to impaired MS. A less severely abnormal relaxation, however, can be also detected in the presence of normal midwall function, independent of LV geometry and load. Thus, diastolic abnormalities may occur before systolic dysfunction even when it is measured at the midwall.
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