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CHO (3.4 ± 0.1 vs. EE (13 ± 0.1 vs. 85% V̇O2max working velocity compared with the C group. Figure 5. Results of working economy in the heat. Average oxygen uptake (A), ratio of carbohydrates (B), and power expenditure (C) at 65%V̇O2max train depth within the heat; average oxygen uptake (D), ratio of carbohydrates (E), and energy expenditure (F) at 75%V̇O2max train intensity within the heat; common oxygen uptake (G), ratio of carbohydrates (H), and energy expenditure (I) in 85%V̇O2max exercise intensity in the heat. This research evaluated the affect of 4-week energetic HA on aerobic capacity in the heat, with a concentrate on metabolic adaptation. The outcomes confirmed that 4-week HA lowered the carbohydrate oxidation, indicating elevated muscle glycogen utilization efficiency during submaximal train within the heat, thus supporting the thermoregulatory adaptation and enchancment of aerobic capability. The 4-week HA decreased the 0.4°C core temperature throughout train within the heat, representing successful physiological adaptation. The lower in core temperature throughout exercise induced by HA can reduce fatigue during train, as evidenced by the examine displaying that four weeks of HA increased the testosterone ranges of trained runners.
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