Related Experiment Video
Updated: Jul 16, 2025

Effects of Surgical Masks on Cardiopulmonary Function in Healthy Subjects
Published on: February 12, 2021
Cardiopulmonary response to exercise in adults born very preterm
Jacques Delfrate1,2,3, Camille Girard-Bock1,3, Daniel Curnier1,4
1CHU Sainte-Justine Research Centre, University of Montreal, Montreal, QC, Canada.
Insights
Young adults born very preterm have reduced exercise capacity due to peripheral limitations, not cardiac issues. Further research is needed to understand muscle oxygen use during exercise.
Area of Science:
- Cardiopulmonary exercise physiology
- Neonatal medicine
- Adult respiratory and critical care medicine
Background:
- Young adults born very preterm exhibit altered cardiopulmonary responses to exercise.
- Bronchopulmonary dysplasia (BPD) is a common complication in extremely preterm infants, potentially impacting long-term exercise capacity.
Purpose of the Study:
- To compare cardiopulmonary responses during aerobic exercise in adults born very preterm versus term controls.
- To investigate the specific impact of bronchopulmonary dysplasia (BPD) on exercise capacity in this population.
Main Methods:
- Cardiopulmonary exercise testing with impedance cardiography was performed on 71 adults born <30 weeks gestational age (24 with BPD) and 73 term controls (aged 18-29 years).
- Group differences in peak oxygen uptake (VO2) and ventilatory/cardiovascular responses were analyzed using linear regression.
Main Results:
- Preterm participants showed reduced peak VO2 compared to controls.
- Individuals with BPD had a lower peak work rate and reduced peak circulatory power.
- The relationship between oxygen uptake and work rate (ΔVO2/ΔWR) was diminished in preterm individuals, suggesting peripheral limitations.
Conclusions:
- Exercise limitation in very preterm adults appears to stem from peripheral factors, specifically reduced oxygen uptake efficiency and circulatory power, rather than cardiac output.
- Further investigation into skeletal muscle perfusion and oxygen utilization during exercise is recommended to elucidate these mechanisms.
Background:
This study aims to compare cardiopulmonary response to aerobic exercise between young adults born very preterm, including a subgroup with bronchopulmonary dysplasia (BPD), and term controls.
Methods:
71 adults (aged 18-29 years) born <30 weeks gestational age (24 with BPD) and 73 term controls were recruited. Assessment included cardiopulmonary exercise testing with impedance cardiography. We compared group differences in peak oxygen uptake (V'O2 ) and in ventilatory and cardiovascular responses to exercise using linear regression analyses.
Results:
Preterm participants had reduced peak V'O2 versus controls (mean difference (MD) -2.7 (95% CI -5.3- -0.1) mL per kg lean body mass per min). Those with BPD achieved lower peak work rate compared with term controls (MD -21 (95% CI -38- -5) W). There was no difference across groups in breathing reserve, ventilatory efficiency, peak heart rate and cardiac output. The V'O2 to work rate relationship (ΔV'O2 /ΔWR) was reduced in preterm versus term. Peak systolic blood pressure and circulatory power (systolic blood pressure×V'O2 ) were also lower in BPD versus term controls. In the preterm group, longer neonatal intensive care unit stay and lower peak cardiac output were associated with lower peak V'O2 .
Conclusions:
Results suggest limitations with peripheral oxygen uptake in the muscles with reduced ΔV'O2 /ΔWR and peak circulatory power, but normal cardiac output. Investigations into skeletal muscle perfusion and oxygen use during exercise are warranted to better understand mechanisms of exercise limitation.
Related Concept Videos
Cardiopulmonary Resuscitation I: Adult
Exercise and Cardiovascular Response
Light to moderate physical activity initiates a series of interconnected responses in the body. The heart rate modestly increases in anticipation of the workout, followed by widespread vasodilation as oxygen consumption by skeletal muscles increases. This results in decreased peripheral resistance, increased capillary blood flow, and accelerated...
Respiratory Capacities
One key metric is the Inspiratory Capacity (IC), which represents the maximum amount of air that can be inhaled with full effort. IC is calculated by summing the tidal volume and inspiratory reserve volume, typically ranging from 2.4 to 3.6 liters.
The Functional Residual Capacity (FRC) represents the air in the...
Exercise and Cardiac Output
Sustained exercise increases the muscles' oxygen demand, which can be...
Pulmonary Cycle: Exhalation
Cardiopulmonary Resuscitation II: ACLS Airway Management

