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Tissue Doppler imaging describes diastolic function in men prone to develop hypertension over twenty years
A Strand1, S E Kjeldsen, H Gudmundsdottir
1Department of Cardiology, Ullevaal University Hospital, Oslo, Norway. a.h.strand@medsin.uio.no
Insights
Tissue velocities imaging (TVI) can detect early left ventricular (LV) diastolic dysfunction in hypertension. Diastolic velocities and mitral flow to annulus velocity ratio effectively differentiate LV function, aiding early detection before irreversible damage occurs.
Area of Science:
- Cardiology
- Medical Imaging
- Hypertension Research
Background:
- Hypertension is a significant risk factor for cardiovascular disease, often leading to left ventricular (LV) systolic and diastolic dysfunction.
- Early detection of LV dysfunction in hypertensive individuals is crucial to prevent irreversible myocardial damage.
Purpose of the Study:
- To explore the utility of tissue velocities imaging (TVI) in assessing left ventricular (LV) function in hypertensive patients.
- To identify reliable parameters for detecting early LV dysfunction in essential hypertension.
Main Methods:
- Comparative analysis of normotensive, newly hypertensive, and established hypertensive individuals (age 60).
- Utilized conventional echocardiography and TVI to evaluate LV parameters.
- Assessed diastolic function using E'(Lat) (TVI peak early diastolic velocity) and E/E'(Lat).
Main Results:
- Significant differences in diastolic function were observed between groups (P = 0.006 for E'(Lat), P = 0.002 for E/E'(Lat)).
- E'(Lat) correlated with S'(Lat) (TDI peak systolic velocity) and LV mass index.
- No significant differences in systolic myocardial velocities were found between groups.
Conclusions:
- Myocardial diastolic velocities and mitral flow to annulus velocity ratio effectively differentiate LV function in hypertensive versus normotensive individuals.
- These parameters likely reflect changes in myocardial relaxation, recoil, and contraction, correlating with LV mass index.
- TVI offers a promising method for early detection of LV dysfunction in hypertension.
Aims:
Hypertension is one of several risk factors of cardiovascular disease and is associated with left ventricular (LV) systolic and diastolic dysfunction. A method for reliably detecting the onset of LV dysfunction before transition to irreversible damage of the myocardium would be of crucial importance in subjects with essential hypertension.
Methods And Results:
Subjects with clear differences in BP level, development and duration of the hypertensive disease were examined at the age of 60 yrs: normotensives (n = 17), new hypertensives who developed hypertension over a 20 year period (n = 15) and hypertensives (n = 19). Relationships between conventional echocardiographic and tissue velocities imaging (TVI) parameters compared to LV parameters, and TVI as an estimate of LV function were explored. E'(Lat) (TVI peak early diastolic velocity) (P = 0.006) and E/E'(Lat) (P = 0.002) demonstrated differences in diastolic function between the groups. There were no significant differences regarding systolic myocardial velocities. E'(Lat) correlated to S'(Lat) (TDI peak systolic velocity) (r = 0.32, P = 0.026) and was independently predicted by S'(Lat) (R(2) = 0.24, P = 0.025) in multivariate analysis. E'(Lat) correlated negatively to LV mass index (r = -0.34, P = 0.012), also in multivariate regression analysis (R(2) = 0.12, P = 0.032).
Conclusions:
Myocardial diastolic velocities and mitral flow to annulus velocity ratio differentiated LV function between the hypertensive and normotensive groups. The parameters probably reflect changes in relaxation, recoil and contraction and parallel changes in LV mass index.
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