TY - JOUR
T1 - Longitudinal measures of deformation are associated with a composite measure of contractility derived from pressure-volume loop analysis in children
AU - Chowdhury, Shahryar M.
AU - Butts, Ryan J.
AU - Taylor, Carolyn L.
AU - Bandisode, Varsha M.
AU - Chessa, Karen S.
AU - Hlavacek, Anthony M.
AU - Nutting, Arni
AU - Shirali, Girish S.
AU - Baker, G. Hamilton
N1 - Funding Information:
This study was funded by the American Society of Echocardiography Foundation and the Mend a Heart Foundation. Dr Chowdhury was supported by NIH/NHLBI grant T32 HL07710 and American Heart Association Mentored Clinical and Population Research Award 15MCPRP25820008.
Publisher Copyright:
© 2017 The Author.
PY - 2018/5/1
Y1 - 2018/5/1
N2 - Aims The relationship between echocardiographic measures of left ventricular (LV) systolic function and reference-standard measures have not been assessed in children. The objective of this study was to assess the validity of echocardiographic indices of LV systolic function via direct comparison to a novel composite measure of contractility derived from pressure-volume loop (PVL) analysis. Methods and results Children with normal loading conditions undergoing routine left heart catheterization were prospectively enrolled. PVLs were obtained via conductance catheters. A composite invasive composite contractility index (ICCI) was developed using data reduction strategies to combine four measures of contractility derived from PVL analysis. Echocardiograms were performed immediately after PVL analysis under the same anesthetic conditions. Conventional and speckle-tracking echocardiographic measures of systolic function were measured. Of 24 patients, 18 patients were heart transplant recipients, 6 patients had a small patent ductus arteriosus or small coronary fistula. Mean age was 9.1 ± 5.6 years. Upon multivariable regression, longitudinal strain was associated with ICCI (β = â '0.54, P = 0.02) while controlling for indices of preload, afterload, heart rate, and LV mass under baseline conditions. Ejection fraction and shortening fraction were associated with LV mass and load indices, but not contractility. Conclusion Speckle-tracking derived longitudinal strain is associated ICCI in children with normal loading conditions. Longitudinal measures of deformation appear to accurately assess LV contractility in children.
AB - Aims The relationship between echocardiographic measures of left ventricular (LV) systolic function and reference-standard measures have not been assessed in children. The objective of this study was to assess the validity of echocardiographic indices of LV systolic function via direct comparison to a novel composite measure of contractility derived from pressure-volume loop (PVL) analysis. Methods and results Children with normal loading conditions undergoing routine left heart catheterization were prospectively enrolled. PVLs were obtained via conductance catheters. A composite invasive composite contractility index (ICCI) was developed using data reduction strategies to combine four measures of contractility derived from PVL analysis. Echocardiograms were performed immediately after PVL analysis under the same anesthetic conditions. Conventional and speckle-tracking echocardiographic measures of systolic function were measured. Of 24 patients, 18 patients were heart transplant recipients, 6 patients had a small patent ductus arteriosus or small coronary fistula. Mean age was 9.1 ± 5.6 years. Upon multivariable regression, longitudinal strain was associated with ICCI (β = â '0.54, P = 0.02) while controlling for indices of preload, afterload, heart rate, and LV mass under baseline conditions. Ejection fraction and shortening fraction were associated with LV mass and load indices, but not contractility. Conclusion Speckle-tracking derived longitudinal strain is associated ICCI in children with normal loading conditions. Longitudinal measures of deformation appear to accurately assess LV contractility in children.
KW - contractility
KW - pressure-volume relations
KW - speckle-tracking echocardiography
KW - systolic function
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U2 - 10.1093/ehjci/jex167
DO - 10.1093/ehjci/jex167
M3 - Article
C2 - 29053805
AN - SCOPUS:85047065445
SN - 2047-2404
VL - 19
SP - 562
EP - 568
JO - European Heart Journal Cardiovascular Imaging
JF - European Heart Journal Cardiovascular Imaging
IS - 5
ER -