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Physiological Responses during Cycle Ergometry at a Constant Perception of Effort
K C Cochrane1, T J Housh1, H C Bergstrom1
1Nutrition and Health Sciences, University of Nebraska-Lincoln, Lincoln, United States.
This study found that during a 1-hour cycling test at a constant perceived exertion, oxygen consumption and power output decreased over time, while respiratory frequency remained stable. This suggests respiratory muscle feedback may influence perceived effort during moderate-intensity exercise.
Area of Science:
- Exercise Physiology
- Sports Science
- Human Performance
Background:
- Understanding physiological responses during prolonged exercise at a constant perceived exertion is crucial for training and performance.
- Previous models have attempted to explain physiological and perceptual changes during sustained exercise, but their accuracy during moderate-intensity cycling requires further investigation.
Purpose of the Study:
- To examine oxygen consumption, heart rate, ventilation, respiratory frequency, and power output during a 1-hour cycling bout at a constant Rating of Perceived Exertion (RPE) corresponding to the Physical Working Capacity at the OMNI threshold (PWC(OMNI)).
- To assess the ability of current models to explain physiological and perceptual responses during this sustained moderate-intensity exercise.
Main Methods:
- 13 subjects completed an incremental test to exhaustion, submaximal rides, and a 1-hour ride at a specific RPE (PWC(OMNI)).
- Physiological parameters including oxygen consumption (V̇O2), heart rate (HR), minute ventilation (+V̇(E)), and respiratory frequency (FR) were monitored.
- Power output and RPE were recorded throughout the 1-hour ride.
Main Results:
- The PWC(OMNI) represented a sustainable moderate-intensity exercise level (56±5% V̇O2Peak).
- Oxygen consumption, minute ventilation, and power output significantly decreased over the 1-hour ride.
- Respiratory frequency showed no significant change over time, indicating RPE tracked FR responses most closely.
Conclusions:
- During prolonged moderate-intensity cycling at a constant RPE, physiological parameters like V̇O2 and power output decline, while respiratory frequency remains stable.
- The findings suggest that afferent feedback from respiratory muscles may play a significant role in mediating the perception of effort during sustained cycling at a constant RPE.
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