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Is echo-determined left ventricular geometry associated with ventricular filling and midwall shortening in
Pasquale Palmiero1, Maria Maiello, Navin C Nanda
1A.S.L.BR 1, Health Center, Districtual Cardiology, Brindisi, Italy. pasqualepalmiero@iciscu.org
Insights
Midwall impairment in hypertensive patients with left ventricular hypertrophy (LVH) indicates systolic dysfunction, even with normal ejection fraction or diastolic function. This finding aids early detection of ventricular dysfunction.
Area of Science:
- Cardiology
- Echocardiography
- Hypertension Research
Background:
- Left ventricular hypertrophy (LVH) in hypertensive patients complicates assessment of ventricular function.
- Midwall fractional shortening (MFS) evaluation is not widely used for detecting early ventricular dysfunction.
Purpose of the Study:
- To investigate the correlation between left ventricular (LV) geometry, mass, diastolic function, and MFS in hypertensive patients with LVH.
- To assess MFS for early detection of ventricular dysfunction, independent of LV ejection fraction (LVEF) and diastolic function.
Main Methods:
- Echocardiography and PW-Doppler evaluation in 1887 hypertensive patients with LVH and LVEF >45%.
- Comparison of LV geometry and mass with Doppler-determined mitral flow and tissue velocities.
- Categorization of LV geometry into eccentric (ELVH) and concentric (CLVH).
Main Results:
- LV MFS impairment was significantly different between ELVH (4.6%) and CLVH (9.4%) patients.
- MFS impairment was higher in patients without diastolic dysfunction, particularly in the CLVH group.
- A higher prevalence of MFS impairment was observed in CLVH patients without diastolic dysfunction (7.6%) compared to those with diastolic dysfunction (1.8%).
Conclusions:
- Midwall LV impairment is an independent predictor of cardiac events in hypertensive patients.
- MFS impairment allows early identification of LV dysfunction, even with normal LVEF or diastolic function.
- Ventricular dysfunction in hypertensive patients with normal LVEF may stem from systolic dysfunction (MFS impairment) rather than solely diastolic dysfunction.
Background:
The correlation between left ventricular (LV) geometry, mass, diastolic function, and midwall fractional shortening (MFS) in hypertensive patients with left ventricular hypertrophy (LVH) is not well established owing to limited diffusion of MFS evaluation. The aim of the study was to evaluate this correlation in 1887 consecutive hypertensive patients, all affected by LVH (mean age 66 years, 924 males), with LV ejection fraction (LVEF) >45% for early detection of ventricular dysfunction rather than LVEF and diastolic function impairment.
Methods And Results:
All patients underwent M-B mode echocardiography and PW-Doppler evaluation. LV geometry and mass were compared with Doppler-determined mitral flow and tissue velocities. LV geometry was eccentric (E) for 1018 subjects (53.9%) and concentric (C) for 869 (46.1%). There was no difference concerning LV diastolic dysfunction (P: n.s.) between 576 (30.6%) of the ELVH and 368 (19.4%) of the CLVH patients. The following parameters showed significant statistical differences: LV MFS impairment (P < 0.01) between 86 (4.6%) of the ELVH and 177 (9.4%) of the CLVH patients. LV MFS impairment rate was higher in 171 patients without LV diastolic dysfunction (9.1%), than in 92 patients affected (4.9%, P < 0.02). In CLVH patients, a higher prevalence of LV MFS impairment was observed in 143 without LV diastolic dysfunction (7.6%), than in 34 patients affected (1.8%, P < 0.01). In ELVH patients, a lower prevalence of LV MFS impairment was observed in 28 without diastolic dysfunction (1.5%), than in 58 patients affected (3.1%, P < 0,03).
Conclusion:
Midwall LV impairment, an independent predictor of cardiac death and morbidity in hypertensive patients, can allow early identification of patients with LV dysfunction even when LVEF or assessment of diastolic function are normal. LV MFS impairment rate is higher in CLVH patients, and even higher when considering only those CLVH patients with no diastolic dysfunction. These results suggest that the ventricular dysfunction with normal LVEF is not always due to diastolic dysfunction, but often to systolic dysfunction as assessed by MFS impairment, an important early sign of ventricular dysfunction in hypertensive patients, even when diastolic function is normal.
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