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Published on: June 12, 2021
Does Cardiac Catheterization Facilitate Hemodynamic Optimization of Pediatric Patients on Continuous-Flow Ventricular
Subhrajit Lahiri1, Swati Choudhry1, Susan W Denfield1
1From the Department of Pediatric Cardiology, Baylor College of Medicine, Texas Children's Hospital, Houston, Texas, USA.
Insights
Cardiac catheterization safely optimizes continuous-flow ventricular assist device (CF-VAD) settings in children. This method effectively adjusts device speed to improve hemodynamics, aiding management for pediatric heart failure patients.
Area of Science:
- Pediatric Cardiology
- Cardiovascular Surgery
- Biomedical Engineering
Background:
- Pediatric ventricular assist device (VAD) therapy faces challenges due to patient-device size mismatch and complex cardiac anatomy.
- Optimizing continuous-flow VAD (CF-VAD) parameters is crucial for improving outcomes in children with heart failure.
Purpose of the Study:
- To evaluate the safety and effectiveness of cardiac catheterization for optimizing CF-VAD parameters in pediatric patients.
- To determine the impact of hemodynamic assessment on VAD speed adjustments and patient management.
Main Methods:
- Retrospective analysis of 16 hemodynamic catheterizations performed on 15 pediatric patients with CF-VAD support between 2013 and 2018.
- Catheterizations were indicated for heart failure signs, pre-transplant pulmonary hypertension evaluation, or myocardial recovery assessment.
- VAD speed was adjusted to achieve optimal hemodynamics, defined by low wedge pressure and acceptable central venous pressure.
Main Results:
- VAD settings were successfully optimized in 75% (14 of 16) of the hemodynamic catheterizations.
- Speed adjustments (increases or decreases) were made in 89% of cases to achieve optimal hemodynamics or facilitate management.
- No adverse events were reported related to the catheterization procedures.
Conclusions:
- Catheterization-based hemodynamic assessment is a safe and effective tool for optimizing CF-VAD speed in pediatric patients.
- This approach provides valuable guidance for medical management and VAD explantation decisions in children.
- Optimized VAD parameters contribute to improved hemodynamic stability in pediatric CF-VAD recipients.
Abstract:
Understanding optimal ventricular assist device (VAD) parameters for pediatric patients is valuable given the inherent issue of patient-device size mismatch and heterogeneous cardiac anatomy in children. We evaluated our center's experience of continuous-flow VAD (CF-VAD) optimization using cardiac catheterization. We performed a retrospective analysis of all patients on CF-VAD support who underwent hemodynamic heart catheterization from 2013 to 2018. Fifteen patients had 16 hemodynamic catheterizations performed. The indications for hemodynamic optimization by catheterization included clinical signs of heart failure while on CF-VAD (9 of 16, 56%), pretransplant evaluation of pulmonary hypertension (2 of 16, 13%), or assessment of myocardial recovery (5 of 16, 31%). The median age at catheterization was 12 years (interquartile range: 8-16). Median baseline speed of device was 2333 ± 253 rotations per minute. The goal was to find the speed at which optimal hemodynamics were achieved, defined by low wedge pressure with an acceptable central venous pressure. Of the 16 catheterizations, there were 9 (56%) speed increases to achieve optimal hemodynamics and 5 (33%) speed decreases for hemodynamic optimization or for potential explant. The speed was not changed in 2 (13%) catheterizations as the patients were determined to be at an optimal hemodynamic state. Overall, VAD settings were optimized in 75% (14 of 16) of hemodynamic catheterizations. There were no adverse events related to catheterization. Thus, we conclude that catheterization-based hemodynamic assessment is safe and effective for optimizing VAD speed and provides guidance on medical management in children supported on CF-VAD.
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