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Left Ventricular Myocardial Function in Children With Pulmonary Hypertension: Relation to Right Ventricular
Dale A Burkett1, Cameron Slorach1, Sonali S Patel1
1From the Division of Cardiology, Heart Institute, Children's Hospital Colorado, University of Colorado, Aurora (D.A.B., S.S.P., A.K.Y.); and Division of Cardiology, The Labatt Family Heart Center, Hospital for Sick Children, University of Toronto, Toronto, Ontario, Canada (C.S., A.N.R., L.M., M.K.F.).
Insights
Pediatric pulmonary hypertension (PH) reduces left ventricular (LV) strain and strain rate, particularly in the septum. These changes correlate with disease severity and right ventricular function.
Area of Science:
- Cardiology
- Pediatric Cardiology
- Cardiovascular Imaging
Background:
- Pulmonary hypertension (PH) can lead to left ventricular (LV) dysfunction due to ventricular interdependence.
- LV strain and strain rate are sensitive indicators of myocardial contractility.
Purpose of the Study:
- To investigate whether LV strain and strain rate are reduced in pediatric PH patients.
- To determine the relationship between LV strain/strain rate and invasive hemodynamics, right ventricular (RV) strain, and functional measures of PH.
Main Methods:
- Echocardiography was prospectively performed in 54 pediatric PH patients and 54 matched controls during cardiac catheterization.
- LV global longitudinal strain (LS) and circumferential strain, along with strain rates, were analyzed.
- Correlations were assessed between LV strain parameters, PH severity, pulmonary vascular resistance, RV strain, and functional class.
Main Results:
- Pediatric PH patients exhibited reduced LV global longitudinal strain and circumferential strain compared to controls.
- The interventricular septum was the most affected LV region, showing significant reductions in basal and mid-septal LS.
- Reduced LV strain and strain rates, especially in the septum, correlated significantly with PH severity, pulmonary vascular resistance, and RV free-wall strain.
Conclusions:
- Pediatric PH is associated with impaired LV myocardial function, evidenced by reduced strain and strain rate, particularly in the septum.
- LV septal strain is a valuable indicator reflecting the severity of PH and its impact on RV function.
Background:
Through ventricular interdependence, pulmonary hypertension (PH) induces left ventricular (LV) dysfunction. We hypothesized that LV strain/strain rate, surrogate measures of myocardial contractility, are reduced in pediatric PH and relate to invasive hemodynamics, right ventricular strain, and functional measures of PH.
Methods And Results:
At 2 institutions, echocardiography was prospectively performed in 54 pediatric PH patients during cardiac catheterization, and in 54 matched controls. Patients with PH had reduced LV global longitudinal strain (LS; -18.8 [-17.3 to -20.4]% versus -20.2 [-19.0 to -20.9]%; P=0.0046) predominantly because of reduced basal (-12.9 [-10.8 to -16.3]% versus -17.9 [-14.5 to -20.7]%; P<0.0001) and mid (-17.5 [-15.5 to -19.0]% versus -21.1 [-19.1 to -23.0]%; P<0.0001) septal strain. Basal global circumferential strain was reduced (-18.7 [-15.7 to -22.1]% versus -20.6 [-19.0 to -22.5]%; P=0.0098), as were septal and free-wall segments. Mid circumferential strain was reduced within the free-wall. Strain rates were reduced in similar patterns. Basal septum LS, the combined average LS of basal and mid interventricular septal segments, correlated strongly with degree of PH (r=0.66; P<0.0001), pulmonary vascular resistance (r=0.60; P<0.0001), and right ventricular free-wall LS (r=0.64; P<0.0001). Brain natriuretic peptide levels correlated moderately with septal LS (r=0.48; P=0.0038). PH functional class correlated moderately with LV free-wall LS (r=-0.48; P=0.0051). The septum, shared between ventricles and affected by septal shift, was the most affected LV region in PH.
Conclusions:
Pediatric PH patients demonstrate reduced LV strain/strain rate, predominantly within the septum, with relationships to invasive hemodynamics, right ventricular strain, and functional PH measures.
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