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Right Ventricular Strain Is Associated With Increased Length of Stay After Tetralogy of Fallot Repair
Ranjini Srinivasan1, Jennifer A Faerber2, Grace DeCost3
1Division of Pediatric Cardiology, Hassenfeld Children's Hospital, New York University Grossman School of Medicine, New York, NY, USA. ranjini.srinivasan@nyulangone.org.
Insights
Right ventricular (RV) strain decreases early after Tetralogy of Fallot (TOF) repair, impacting hospital stay. This cardiac magnetic resonance imaging (CMR) study reveals key insights into post-surgical RV remodeling.
Area of Science:
- Cardiology
- Pediatric Cardiac Surgery
- Medical Imaging
Background:
- Right ventricular (RV) remodeling post-Tetralogy of Fallot (TOF) repair is not well understood.
- Early post-operative assessment of RV myocardial function is crucial.
Purpose of the Study:
- To describe RV myocardial deformation using cardiac magnetic resonance imaging (CMR) after TOF repair.
- To investigate associations between RV deformation parameters and early post-operative outcomes.
Main Methods:
- Prospective pilot study involving 15 infants undergoing CMR without sedation post-TOF repair.
- RV deformation (strain) measured via tissue tracking; RV ejection fraction (EF), volumes, and pulmonary regurgitant fraction also assessed.
- Pearson correlation coefficients used to analyze associations between strain, CMR measures, and clinical outcomes.
Main Results:
- RV function was preserved (mean RV EF 62%).
- Peak radial and longitudinal RV strain were diminished.
- Worse RV peak radial strain correlated with longer hospital stay (r = -0.54, p = 0.04).
- Greater pulmonary regurgitant fraction associated with shorter time to peak radial RV strain (r = -0.55, p = 0.03).
Conclusions:
- Early decrease in RV strain observed after TOF repair.
- RV strain changes are associated with hospital stay, even before apparent changes in RV EF or size.
Background:
Little is known regarding right ventricular (RV) remodeling immediately after Tetralogy of Fallot (TOF) repair. We sought to describe myocardial deformation by cardiac magnetic resonance imaging (CMR) after TOF repair and investigate associations between these parameters and early post-operative outcomes.
Methods:
Fifteen infants underwent CMR without sedation as part of a prospective pilot study after undergoing complete TOF repair, prior to hospital discharge. RV deformation (strain) was measured using tissue tracking, in addition to RV ejection fraction (EF), volumes, and pulmonary regurgitant fraction. Pearson correlation coefficients were used to determine associations between both strain and CMR measures/clinical outcomes.
Results:
Most patients were male (11/15, 73%), with median age at TOF repair 53 days (interquartile range, 13,131). Most patients had pulmonary stenosis (vs. atresia) (11/15, 73%) and 7 (47%) received a transannular patch as part of their repair. RV function was overall preserved with mean RV EF of 62% (standard deviation [SD], 9.8). Peak radial and longitudinal strain were overall diminished (mean ± SD, 33.80 ± 18.30% and -15.50 ± 6.40%, respectively). Longer hospital length of stay after TOF repair was associated with worse RV peak radial ventricular strain (correlation coefficient (r), -0.54; p = 0.04). Greater pulmonary regurgitant fraction was associated with shorter time to peak radial RV strain (r = -0.55, p = 0.03).
Conclusions:
In this small study, our findings suggest presence of early decrease in RV strain after TOF repair and its association with hospital stay when changes in EF and RV size are not yet apparent.
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