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Cardiovascular adaptation to exercise at high altitude.
Exercise and Sport Sciences Reviews
|January 1, 1986
Summary
High altitude exercise causes hypoxia, initially increasing cardiac output. Over time, the body adapts through hemoconcentration and metabolic shifts, improving endurance despite reduced aerobic capacity.
Area of Science:
- Exercise Physiology
- Altitude Physiology
- Environmental Medicine
Background:
- High altitude environments present reduced atmospheric pressure, leading to hypoxia.
- Exercise increases oxygen demand, exacerbating the effects of reduced oxygen availability.
Purpose of the Study:
- To investigate the physiological responses and adaptations to exercise at high altitude.
- To explore the parallels between high altitude adaptation and exercise training adaptations.
Main Methods:
- The study describes physiological responses to reduced oxygen tension during exercise.
- It details cardiovascular, metabolic, and hematological adjustments over time.
- It compares these adaptations to those induced by exercise training at sea level.
Main Results:
- Initial response to high altitude exercise includes increased cardiac output to maintain oxygen delivery.
- Over days, hemoconcentration increases blood oxygen-carrying capacity, reducing cardiac output.
- Sympathetic nervous system stimulation alters metabolism and increases red blood cell production.
Conclusions:
- High altitude exercise initially reduces aerobic capacity but improves endurance with acclimatization.
- Adaptations to high altitude hypoxia share similarities with exercise training, particularly metabolic changes.
- Exercise training may confer an advantage for adapting to high altitude environments.