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Oxygen Availability in Respiratory Muscles During Exercise in Children Following Fontan Operation
Fabian Stöcker1, Rhoia Neidenbach2, Celina Fritz2
1Department for Sport and Health Sciences, Teaching and Educational Center, Technical University Munich, Munich, Germany.
Insights
Patients with Fontan circulation experience significant strain on respiratory muscles during exercise. These auxiliary muscles show worse perfusion, indicating potential systemic skeletal muscle issues beyond the chest in Fontan survivors.
Area of Science:
- Pediatric Cardiology
- Cardiopulmonary Physiology
- Exercise Science
Background:
- Survival rates for congenital heart disease have improved, raising quality of life concerns, including sports and daily activities.
- Fontan circulation lacks a traditional pump, directly connecting systemic veins to pulmonary arteries, creating complex hemodynamics.
- Thoracic mechanics are critical in Fontan circulation due to factors like atrial function, valve integrity, and pulmonary function.
Purpose of the Study:
- To investigate the oxygen delivery and utilization matching in auxiliary respiratory muscles during incremental exercise.
- To compare respiratory muscle oxygenation between young male Fontan patients and healthy controls.
Main Methods:
- Cardiopulmonary exercise testing (CPET) to exhaustion was performed on 22 Fontan patients and 10 healthy controls.
- Near-infrared spectroscopy (NIRS) was used for non-invasive measurement of respiratory muscle oxygenation.
- Analysis focused on the matching of respiratory muscle oxygen delivery to utilization during exercise.
Main Results:
- Fontan patients exhibited significantly lower peak power output, oxygen uptake, and breath activity compared to controls.
- Respiratory muscle deoxygenation occurred significantly earlier in Fontan patients.
- The matching of local muscle perfusion to oxygen demand was significantly impaired in Fontan patients between 50% and 90% of exercise.
Conclusions:
- Incremental exercise imposes high strain on respiratory muscles in Fontan patients.
- Auxiliary respiratory muscles are demonstrably worse perfused in individuals with Fontan procedures.
- Impaired respiratory muscle perfusion may reflect broader skeletal muscle strain and perfusion deficits in Fontan survivors.
Abstract:
Introduction: As survival of previously considered as lethal congenital heart disease forms is the case in our days, issues regarding quality of life including sport and daily activities emerge. In patients with Fontan circulation, there is no pump to propel blood into the pulmonary arteries since the systemic veins are directly connected to the pulmonary arteries. The complex hemodynamics of Fontan circulation include atrial function, peripheral muscle pump, integrity of the atrioventricular valve, absence of restrictive, or obstructive pulmonary lung function. Therefore, thoracic mechanics are of particular importance within the complex hemodynamics of Fontan circulation. Methods: To understand the physiology of respiratory muscles, the aim of this study was to examine the matching of auxiliary respiratory muscle oxygen delivery and utilization during incremental exercise in young male Fontan patients (n = 22, age = 12.04 ± 2.51) and healthy Controls (n = 10, age = 14.90 ± 2.23). All subjects underwent a cardiopulmonary exercise test (CPET) to exhaustion whereas respiratory muscle oxygenation was measured non-invasively using a near-infrared spectrometer (NIRS). Results: CPET revealed significantly lower peak power output, oxygen uptake and breath activity in Fontan patients. The onset of respiratory muscle deoxygenation was significantly earlier. The matching of local muscle perfusion to oxygen demand was significantly worse in Fontans between 50 and 90% . Findings: The results indicate that (a) there is high strain on respiratory muscles during incremental cycling exercise and (b) auxiliary respiratory muscles are worse perfused in patients who underwent a Fontan procedure compared to healthy Controls. This might be indicative of a more general skeletal muscle strain and worse perfusion in Fontan patients rather than a localized-limited to thoracic muscles phenomenon.
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