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Published on: October 28, 2020
Association of inappropriate left ventricular mass with systolic and diastolic dysfunction: the HyperGEN study
Giovanni de Simone1, Dalane W Kitzman, Vittorio Palmieri
1Weill Medical College of Cornell University, New York, New York, USA. simogi@unina.it
Insights
Inappropriate left ventricular mass (LVM) is linked to delayed relaxation and systolic dysfunction, even without clear hypertrophy. This finding highlights potential diastolic abnormalities in hypertensive individuals with excess LVM.
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Echocardiography
Background:
- Left ventricular mass (LVM) exceeding workload needs is linked to adverse prognosis, concentric geometry, and systolic dysfunction.
- Previous studies lacked data on the association between inappropriate LVM and diastolic properties in population-based cohorts.
Purpose of the Study:
- To investigate the relationship between inappropriate left ventricular mass (LVM) and left ventricular (LV) diastolic properties in hypertensive individuals.
- To determine if excess LVM is associated with alterations in LV diastolic function in an unselected population.
Main Methods:
- Examined 1513 hypertensive participants without prevalent cardiovascular disease from the HyperGEN study.
- Defined inappropriate LVM as observed/predicted LVM >133%, with prediction derived from stroke work, sex, and height in normal individuals.
- Assessed LV dimensions, geometry, systolic function (ejection fraction, midwall shortening), and diastolic properties (isovolumic relaxation time, deceleration time).
Main Results:
- 15% of participants had inappropriate LVM, exhibiting higher LV dimensions, relative wall thickness, and prolonged isovolumic relaxation time (IVRT).
- Inappropriate LVM was associated with lower ejection fraction, midwall shortening, and cardiac output.
- Excess LVM directly correlated with prolonged IVRT and inversely with deceleration time, independent of confounders.
Conclusions:
- Excessive left ventricular mass is associated with delayed LV relaxation and mild systolic dysfunction, irrespective of demographic, clinical, or hemodynamic factors.
- Inappropriately high LVM correlates with increased myocardial stiffness and prolonged LV relaxation, suggesting diastolic abnormalities.
Background:
Left ventricular mass (LVM) exceeding values appropriate for individual workload is associated with concentric LV geometry and systolic dysfunction at both the midwall and chamber levels, even independently of clearcut LV hypertrophy, and is a marker of adverse prognosis. No information is available on whether inappropriate LVM is associated with alterations of LV diastolic properties in unselected population-based studies.
Methods:
We examined 1513 hypertensive participants from the HyperGEN population who were without prevalent cardiovascular disease. The LVM prediction from stroke work (systolic blood pressure x Doppler stroke volume), sex, and height (in meters2.7) was derived in 210 nonobese, normal individuals. Observed/predicted LVM >133% defined inappropriate LVM.
Results:
Participants with inappropriate LVM (229 subjects [15%]) exhibited higher LV dimensions and relative wall thickness, lower ejection fraction, midwall shortening and cardiac output, and prolonged isovolumic relaxation time (IVRT; P < or = .001). Other diastolic abnormalities were not associated with inappropriate LVM. After accounting for demographic and hemodynamic confounders, IVRT was directly related to excess LVM, whereas deceleration time of E velocity was negatively related to excess LVM. Nonechocardiographic correlates of prolonged relaxation included aging, African American ethnicity, male gender, and diabetes.
Conclusions:
The LVM exceeding the compensatory needs for workload is associated with delayed LV relaxation as well as mild midwall and chamber systolic dysfunction, independently of demographic, clinical, and hemodynamic confounders. Inappropriately high LVM also correlates with features of increased myocardial stiffness, coexisting with evidence of prolonged LV relaxation.
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