Respiratory System During Exercise
Exercise significantly impacts the functioning of the respiratory system, leading to increased ventilation and more efficient gas exchange.
Inspiration During Exercise
- Intercostal muscles contract more forcefully, pulling the rib cage up and out.
- The diaphragm contracts and flattens more than during rest.
- The chest cavity expands further, causing a greater drop in lung pressure.
- Air rushes into the alveoli more rapidly due to the increased pressure difference.
Highlight: The rate and depth of breathing increase during exercise to meet the body's increased oxygen demand.
Expiration During Exercise
- Intercostal muscles relax, allowing the ribs to return to their normal position.
- The diaphragm relaxes and moves upward.
- The chest cavity decreases in size, increasing pressure in the lungs.
- Air is forcefully expelled from the lungs and alveoli.
Example: During intense exercise, you might notice yourself actively pushing air out, unlike the passive expiration during rest.
Differences Between Inhaled and Exhaled Air
The composition of air changes significantly as it passes through the respiratory system:
Inhaled Air:
- Oxygen: 20.95%
- Nitrogen: 79%
- Carbon Dioxide: 0.04%
- Water Vapor: 0.01%
Exhaled Air:
- Oxygen: 16%
- Nitrogen: 79%
- Carbon Dioxide: 4.0%
- Water Vapor: 1%
Highlight: The most notable changes are the decrease in oxygen content and the significant increase in carbon dioxide and water vapor in exhaled air.
These changes reflect the gas exchange process in the lungs, where oxygen is absorbed into the bloodstream and carbon dioxide is removed from the body.
Vocabulary: Gaseous exchange refers to the process by which oxygen and carbon dioxide are exchanged between the air in the alveoli and the blood in the surrounding capillaries.
Understanding the respiratory system and its response to exercise is crucial for GCSE PE students. It helps explain how the body adapts to meet increased oxygen demands during physical activity and how regular exercise can improve respiratory function over time.



