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Changes in energy system contributions to the Wingate anaerobic test in climbers after a high altitude expedition

机译:高海拔探险后,在登山者中对攀爬厌氧检验的能量系统贡献的变化

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Purpose The Wingate anaerobic test measures the maximum anaerobic capacity of the lower limbs. The energy sources of Wingate test are dominated by anaerobic metabolism (similar to 80%). Chronic high altitude exposure induces adaptations on skeletal muscle function and metabolism. Therefore, the study aim was to investigate possible changes in the energy system contribution to Wingate test before and after a high-altitude sojourn. Methods Seven male climbers performed a Wingate test before and after a 43-day expedition in the Himalaya (23 days above 5.000 m). Mechanical parameters included: peak power (PP), average power (AP), minimum power (MP) and fatigue index (FI). The metabolic equivalents were calculated as aerobic contribution from O-2 uptake during the 30-s exercise phase (W-VO2), lactic and alactic anaerobic energy sources were determined from net lactate production (W-La) and the fast component of the kinetics of post-exercise oxygen uptake (W-PCr), respectively. The total metabolic work (W-TOT) was calculated as the sum of the three energy sources. Results PP and AP decreased from 7.3 +/- 1.1 to 6.7 +/- 1.1 W/kg and from 5.9 +/- 0.7 to 5.4 +/- 0.8 W/kg, respectively, while FI was unchanged. W-TOT declined from 103.9 +/- 28.7 to 83.8 +/- 17.8 kJ. Relative aerobic contribution remained unchanged (19.9 +/- 4.8% vs 18.3 +/- 2.3%), while anaerobic lactic and alactic contributions decreased from 48.3 +/- 11.7 to 43.1 +/- 8.9% and increased from 31.8 +/- 14.5 to 38.6 +/- 7.4%, respectively. Conclusion Chronic high altitude exposure induced a reduction in both mechanical and metabolic parameters of Wingate test. The anaerobic alactic relative contribution increased while the anaerobic lactic decreased, leaving unaffected the overall relative anaerobic contribution to Wingate test.
机译:目的,WinGate Anaerobic测试测量下肢的最大厌氧容量。 WinGate测试的能源是厌氧代谢的主导(类似于80%)。慢性高海拔暴露会诱导对骨骼肌功能和新陈代谢的适应性。因此,研究目的是调查在高空索Journ之前和之后的电影测试中的能量系统贡献的可能变化。方法七名男性登山者在喜马拉雅岛(5.000米以上23天)之前和之后进行了一项长期和之后的幼术试验。包括机械参数包括:峰值功率(PP),平均功率(AP),最小功率(MP)和疲劳指数(FI)。从30-2在30-2运动期(W-Vo2)期间,从O-2摄取计算的代谢当量是有氧贡献,从净乳酸盐产生(W-LA)和动力学的快速组分确定乳酸和末anaerobic能源分别锻炼后氧气摄取(W-PCR)。总代谢工作(W-TOT)计算为三种能源的总和。结果PP和AP分别从7.3 +/- 1.1减少到6.7 +/- 1.1,分别为5.9 +/- 0.7至5.4 +/- 0.8 w / kg,而无变化。 W-Tot从103.9 +/- 28.7到83.8 +/- 17.8 KJ。相对好氧贡献保持不变(19.9 +/- 4.8%与18.3 +/- 2.3%),而厌氧乳酸和纠缠贡献从48.3 +/- 11.7减少到43.1 +/- 8.9%,从31.8 +/- 14.5增加到38.6 +/- 7.4%。结论慢性高海拔暴露诱导了翼试验机械和代谢参数的减少。厌氧乳酸相对贡献在厌氧乳酸下降时增加,未受影响到翼试验的整体相对厌氧贡献。

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