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The individual response to training and competition at altitude

机译:个人对高空训练和比赛的反应

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摘要

Performance in athletic activities that include a significant aerobic component at mild or moderate altitudes shows a large individual variation. Physiologically, a large portion of the negative effect of altitude on exercise performance can be traced to limitations of oxygen diffusion, either at the level of the alveoli or the muscle microvasculature. In the lung, the ability to maintain arterial oxyhaemoglobin saturation (SaO2) appears to be a primary factor, ultimately influencing oxygen delivery to the periphery. SaO2 in hypoxia can be defended by increasing ventilatory drive; however, during heavy exercise, many athletes demonstrate limitations to expiratory flow and are unable to increase ventilation in hypoxia. Additionally, increasing ventilatory work in hypoxia may actually be negative for performance, if dyspnoea increases or muscle blood flow is reduced secondary to an increased sympathetic outflow (eg, the muscle metaboreflex response). Taken together, some athletes are clearly more negatively affected during exercise in hypoxia than other athletes. With careful screening, it may be possible to develop a protocol for determining which athletes may be the most negatively affected during competition and/or training at altitude.
机译:在中等或中等高度的体育活动中,包括重要的有氧运动,其表现表现出较大的个体差异。从生理上讲,海拔高度对运动表现的负面影响很大一部分可归因于肺泡水平或肌肉微脉管系统水平的氧气扩散限制。在肺中,维持动脉血红蛋白饱和度(SaO2)的能力似乎是主要因素,最终影响了向外周的氧气输送。缺氧时的SaO2可以通过增加通气驱动来防御。但是,在剧烈运动中,许多运动员表现出呼气流量受限,并且在缺氧状态下无法增加通气量。另外,如果呼吸困难增加或交感神经流出增加(例如,肌肉代谢反射反应)继而导致肌肉血流减少,则缺氧时增加通气功可能实际上对表现不利。综上所述,在低氧运动中,某些运动员显然比其他运动员受到的负面影响更大。通过仔细的筛选,可能会开发出一种协议,用于确定哪些运动员在高海拔的比赛和/或训练过程中受到的负面影响最大。

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