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Exercise capacity and participation of children with a ventricular septal defect
Mathijs Binkhorst1, Tom van de Belt, Marieke de Hoog
1Department of Integrative Physiology, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands. M.Binkhorst@cukz.umcn.nl
Insights
Children with ventricular septal defect (VSD) demonstrate normal exercise capacity and physical activity levels, even after surgery. While operated children show a mild heart rate limitation, overall fitness and perceived health remain comparable to peers.
Area of Science:
- Pediatric Cardiology
- Exercise Physiology
- Congenital Heart Disease
Background:
- Data on exercise performance in children with ventricular septal defect (VSD) is limited.
- Understanding exercise capacity is crucial for managing VSD and guiding physical activity recommendations.
Purpose of the Study:
- To investigate exercise capacity and physical activity levels in children with VSD.
- To determine factors influencing exercise performance in this population.
Main Methods:
- Compared VSD patients (operated and unoperated) with healthy controls.
- Assessed anthropometry, spirometry, cycle ergometry (peak oxygen uptake, heart rate, workload), and daily energy expenditure.
- Utilized questionnaires for physical activity, overprotection, and self-perceived health.
Main Results:
- No significant differences in peak oxygen uptake, peak workload, or energy expenditure were found between groups.
- Operated VSD patients exhibited a significantly lower peak heart rate, not due to reduced effort.
- Children with VSD reported lower sports participation but perceived themselves as healthy with normal activity levels.
Conclusions:
- Children with VSD (patent or surgically repaired) possess normal exercise capacity.
- Previous cardiac surgery does not negatively impact exercise performance.
- VSD patients maintain normal habitual physical activity and do not perceive significant exercise limitations.
Abstract:
Existing data on exercise performance in children with a ventricular septal defect (VSD) are scarce and inconclusive. We aimed to elucidate whether and why exercise capacity and physical activity level are decreased in children with VSD. Children 9 to 17 years of age with a surgically (operated, n = 13) or conservatively (unoperated, n = 14) managed VSD were compared with healthy peers (controls, n = 15) regarding (1) anthropometric and spirometric measurements; (2) cycle ergometric performance in terms of peak oxygen uptake, peak heart rate, and peak workload; and (3) mean daily energy expenditure. All subjects completed a questionnaire on physical activity participation, overprotection, and self-perceived fitness and health. Anthropometric variables were comparable among groups, whereas lung function at rest was mildly decreased in the 2 VSD subgroups. Exercise testing succeeded in all 42 subjects; valid results were obtained in 39. Weight- and body fat-adjusted peak oxygen uptake, peak workload, and energy expenditure were not significantly different among groups. Peak heart rate emerged as significantly lower in operated subjects, which was not attributable to poorer effort. Physical fitness and general health were rated comparably among groups, whereas participation in sports was markedly lower in children with VSD. Discouragement from engaging in (strenuous) exercise occurred equally infrequently in children with VSD and controls. In conclusion, children with patent or surgically closed VSDs have a normal exercise capacity, despite a mild chronotropic limitation in the latter. Previous cardiac surgery did not influence these children's exercise performance. These children consider themselves healthy, they exhibit a normal habitual physical activity level, and they are not withheld from (strenuous) exercise.
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