TY - JOUR
T1 - Right ventricular energetics and power in pulmonary regurgitation vs. stenosis using four dimensional phase contrast magnetic resonance
AU - Fernandes, Joao Filipe
AU - Hammel, James M.
AU - Zhou, Jia
AU - Xiao, Yunbin
AU - Chen, Manuela
AU - Alves, Rita
AU - Lof, John
AU - Grieve, Stuart M.
AU - Schuster, Andreas
AU - Kuehne, Titus
AU - Kutty, Shelby
N1 - Funding Information:
The study was funded by grants from the University of Nebraska Foundation and Children's Hospital and Medical Center Foundation and partially supported by the German Research Foundation (DFG, Grant GO1067/6-1-KU1329/10-1, Berlin, Germany).
Funding Information:
The study was funded by grants from the University of Nebraska Foundation and Children's Hospital and Medical Center Foundation and partially supported by the German Research Foundation (DFG, Grant GO1067/6-1-KU1329/10-1 , Berlin, Germany).
Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2018/7/15
Y1 - 2018/7/15
N2 - Objective: We investigated a full energetic profile of pressure and volume loaded right ventricle (RV) in porcine models by evaluating kinetic energy (KE), stroke power, power output and power loss across pulmonary valves with stenosis (PS) or with regurgitation (PR). Methods: Fifteen pigs (6 PS and 6 PR, 3 unoperated controls) were studied. Phase-contrast 4D-flow MRI was performed in models of PS and PR at baseline and at 10–12 weeks, in conjunction with cardiac catheterization. Phase contrast velocities over 1 cardiac cycle were registered with a dynamic mask of the RV segmented from cine images. Mean KE and KE curve profiles were measured, normalized for RV volumes and compared between groups. Right heart catheterization pressures were used to calculate RV stroke power and power output, from which pulmonary valve power loss and RV power output ratio were calculated, and compared between groups. Results: PS and PR groups had similar KE pre procedure but significant changes in KE post procedure. The PR group had higher RV power output ratio and KE (72.1% ± 11.4%; 20.6 ± 6.1) than PS group (25.6% ± 4.7%; 13.8 ± 5.0) post procedure. Volume loaded RV from PR had higher KE and power output ratio compared to pressure load from PS. Conclusions: In porcine models of PS and PR, the RV presents altered systolic and diastolic energetic profiles. Pulmonary valve efficiency appeared to decrease in the medium term with somatic growth, with increased power loss in all groups studied, and greatly within the PS group.
AB - Objective: We investigated a full energetic profile of pressure and volume loaded right ventricle (RV) in porcine models by evaluating kinetic energy (KE), stroke power, power output and power loss across pulmonary valves with stenosis (PS) or with regurgitation (PR). Methods: Fifteen pigs (6 PS and 6 PR, 3 unoperated controls) were studied. Phase-contrast 4D-flow MRI was performed in models of PS and PR at baseline and at 10–12 weeks, in conjunction with cardiac catheterization. Phase contrast velocities over 1 cardiac cycle were registered with a dynamic mask of the RV segmented from cine images. Mean KE and KE curve profiles were measured, normalized for RV volumes and compared between groups. Right heart catheterization pressures were used to calculate RV stroke power and power output, from which pulmonary valve power loss and RV power output ratio were calculated, and compared between groups. Results: PS and PR groups had similar KE pre procedure but significant changes in KE post procedure. The PR group had higher RV power output ratio and KE (72.1% ± 11.4%; 20.6 ± 6.1) than PS group (25.6% ± 4.7%; 13.8 ± 5.0) post procedure. Volume loaded RV from PR had higher KE and power output ratio compared to pressure load from PS. Conclusions: In porcine models of PS and PR, the RV presents altered systolic and diastolic energetic profiles. Pulmonary valve efficiency appeared to decrease in the medium term with somatic growth, with increased power loss in all groups studied, and greatly within the PS group.
KW - Cardiovascular magnetic resonance
KW - Congenital heart disease
KW - Four-dimensional flow
KW - Right ventricular remodeling
UR - https://www.scopus.com/pages/publications/85045324911
UR - https://www.scopus.com/pages/publications/85045324911#tab=citedBy
U2 - 10.1016/j.ijcard.2018.03.136
DO - 10.1016/j.ijcard.2018.03.136
M3 - Article
C2 - 29657080
AN - SCOPUS:85045324911
SN - 0167-5273
VL - 263
SP - 165
EP - 170
JO - International Journal of Cardiology
JF - International Journal of Cardiology
ER -