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Updated: Jul 15, 2025

Wireless Telemetry Device Implantation in a Fontan Ovine Model for Continuous and Long-Term Hemodynamic Monitoring
Published on: May 2, 2025
Central Venous Waveform Patterns in the Fontan Circulation Independently Contribute to the Prediction of Composite
Margaret R Ferrari1, Michal Schäfer2, Kendall S Hunter1
1Department of Bioengineering, University of Colorado Anschutz Medical Campus, Aurora, CO, 80045, USA.
Insights
Analyzing Fontan circulation hemodynamics using MRI flow data reveals key predictors of patient survival. Central venous waveform analysis, combined with ventricular function, offers superior prediction of clinical outcomes.
Area of Science:
- Cardiovascular Medicine
- Medical Imaging
- Hemodynamics
Background:
- The Fontan circulation significantly alters central venous hemodynamics, leading to elevated pressures.
- Comorbidities like Fontan-associated liver disease (FALD) and protein-losing enteropathy (PLE) are linked to these hemodynamic changes.
- Previous research quantified these venous perturbations using MRI flow waveform analysis.
Purpose of the Study:
- To determine if principal component (PC) analyses of Fontan patient flow waveforms are associated with Fontan survival.
- To investigate the predictive value of central venous flow features for clinical outcomes in Fontan patients.
Main Methods:
- Cardiac MRI was performed on 140 patients with Fontan circulation under free-breathing and mechanical ventilation.
- Standard volumetric and functional hemodynamics, along with flow analysis principal components (PCs), were analyzed.
- Univariate and bivariate Cox regression analyses were used to assess prediction of composite clinical outcomes.
Main Results:
- Ventricular function measures (ejection fraction, indexed end-systolic volume, indexed end-diastolic volume) were specific predictors of clinical events.
- A feature of inferior vena cava (IVC) flow (PC2), indicating increased systolic flow, was a highly sensitive predictor of outcomes (sensitivity 0.93).
- Bivariate analysis combining ventricular function with IVC flow (PC2) provided the best overall prediction of the composite clinical outcome.
Conclusions:
- Central venous waveform analysis provides additional prognostic information in Fontan patients.
- Combining sensitive measures (like IVC flow PC2) with specific measures (ventricular function) in bivariate analysis enhances the prediction of Fontan patient survival.
Abstract:
It is well appreciated that the Fontan circulation perturbs central venous hemodynamics, with elevated pressure being the clearest change associated with Fontan comorbidities, such as Fontan-associated liver disease (FALD) and protein-losing enteropathy (PLE). Our group has better quantity of these venous perturbations through single- and multi-location analyses of flow waveforms obtained from magnetic resonance imaging of Fontan patients. Here, we determine if such analyses, which yield principal components (PC) that describe flow features, are associated with Fontan survival. Patients with a Fontan circulation (N = 140) that underwent free-breathing and mechanically ventilated cardiac MRI were included in this study. Standard volumetric and functional hemodynamics, as well as flow analysis principal components, were subjected to univariate and bivariate Cox regression analyses to determine composite clinical outcome, including plastic bronchitis, PLE, and referral and receipt of transplant. Unsurprisingly, ventricular function measures of ejection fraction (EF; HR = 0.88, p < 0.0001), indexed end-systolic volume (ESVi; HR 1.02, p < 0.0001), and indexed end-diastolic volume (EDVi; HR = 1.02, p = 0.0007) were found as specific predictors of clinical events, with specificities uniformly > 0.75. Additionally a feature of IVC flow (PC2) indicating increased flow in systole was found as a highly sensitive predictor (HR = 0.851, p = 0.027, sensitivity 0.93). In bivariate prediction, combinations of ventricular function (EF, ESVi, EDVi) with this IVC flow feature yielded best overall prediction of composite outcome. This suggests that central venous waveform analysis relays additional information about Fontan patient survival and that coupling sensitive and specific measures in bivariate analysis is a useful approach for obtaining superior prediction of survival.
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