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[Research Reading] Research on Heat Tolerance Training for Marathon Runners' Plasma Volume Expansion and Core Body Temperature Adaptation: Study on Physical Fitness Characteristics of Elite Athletes (No. 1435)

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Research Review: Effects of Heat Acclimation Training on Plasma Volume Expansion and Core Temperature Adaptation in Marathon Runners: A Study of Elite Athlete Physiological Characteristics (No. 1435)

Source Reference: Journal of Applied Physiology • International Scientific Research Review Series

This article explores the physiological mechanisms of heat acclimation training on plasma volume expansion and core temperature regulation adaptation in marathon runners.

Physiological Mechanisms of Plasma Volume Expansion

Repeated heat exposure stimulates the kidneys and endocrine system to release antidiuretic hormone and aldosterone, prompting the body to retain more water and sodium ions, thereby expanding plasma volume. With increased plasma volume, at the same cardiac output, skin blood flow and muscle blood flow can both receive more adequate supply simultaneously—this is the key to how heat adaptation can improve both “heat dissipation capacity” and “exercise performance”: before plasma volume expansion, the body must compete between “muscle blood supply” and “skin heat dissipation blood supply”; after adaptation, this competition is greatly alleviated.

Core Temperature Regulation Adaptation Process

The complete heat adaptation process typically requires 10-14 days of repeated exposure. During the adaptation process, the following can be observed:

  • The body temperature threshold for sweat onset decreases (sweating begins earlier, heat dissipation response becomes more sensitive)
  • Sweat rate per unit time increases, but sodium ion concentration in sweat decreases (reducing electrolyte loss)
  • At the same exercise intensity, the rise in core body temperature is smaller, and resting heart rate decreases

Heat Adaptation Days and Physiological Indicator Changes (Illustrative)

Adaptation Days Plasma Volume Change Core Temperature Response Subjective Sensation
Days 1-3 Begins to rise Still noticeably elevated Noticeable discomfort, elevated heart rate
Days 4-7 Continues to expand Rate of rise slows Gradually adapting, still feels burdensome
Days 8-14 Approaches a stable plateau Relatively stable Subjective burden significantly reduced

Key Research Conclusions and Practical Recommendations

  • Exposure Methods: Adaptation can be accelerated through actual hot-environment training, or by scheduling additional passive heat exposure via hot baths/saunas after training in a mild environment
  • Electrolyte Supplementation: Sweat rate increases substantially during the adaptation period; sodium and water intake frequency should be increased to avoid the risk of hyponatremia
  • Progressive Approach: Exercise intensity should be reduced during the initial phase of heat adaptation training to avoid the risk of heat stroke from simultaneous spikes in core temperature and cardiovascular load
  • Adaptation Diminishes: Heat adaptation effects gradually fade approximately 1-3 weeks after cessation of exposure; the main adaptation period for pre-race heat acclimation should be scheduled within 2 weeks before the competition

Common Research Q&A (FAQ)

Q: Is heat acclimation training suitable for all marathon runners?

A: The benefits are most pronounced for athletes planning to compete in hot, humid environments. If the race location has a cool climate, the marginal benefit of heat acclimation decreases, but plasma volume expansion itself still has positive effects on general endurance performance.

Q: Can saunas replace actual hot-weather training?

A: Saunas can serve as a supplementary method—passive heat exposure can indeed induce partial adaptation responses—but they cannot fully replace the training-specific adaptations that occur when “exercise + heat” happen simultaneously. It is recommended to combine both approaches.

References and Academic Citations

  1. Journal of Applied Physiology — Research directions related to heat adaptation and plasma volume regulation mechanisms.
  2. Scandinavian Journal of Medicine & Science in Sports — Literature on the effects of heat acclimation training interventions in endurance athletes.
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