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The ergogenics of hypoxia training in athletes.

机译:运动员缺氧训练的人体工程学。

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摘要

Hypoxia elicits hematopoiesis, which ultimately improves oxygen transport to peripheral tissues. In part because of this, altitude training has been used in the conditioning of elite endurance athletes for decades, despite equivocal evidence that such training benefits subsequent sea level performance. Recently, traditional live high-train high athletic conditioning has been implicated in a number of deleterious effects on training intensity, cardiac output, muscle composition, and fluid and metabolite balance--effects that largely offset hematopoietic benefits during sea level performance. Modified live high-train low conditioning regimens appear to capture the beneficial hematopoietic effects of hypoxic training while avoiding many of the deleterious effects of training at altitude. Because of the logistical and financial barriers to living high and training low, various methods to simulate hypoxia have been developed and studied. The data from these studies suggest a threshold requirement for hypoxic exposure to meaningfully augment hematopoiesis, and presumably improve athletic performance.
机译:缺氧会引起造血功能,最终改善氧气向周围组织的运输。部分由于这个原因,尽管有明确的证据表明这种训练有益于随后的海平面表现,但数十年来,这种训练已被用于训练耐力精英运动员。最近,传统的高强度运动训练对运动强度,心输出量,肌肉组成以及体液和代谢产物平衡产生了许多有害影响,这些影响在很大程度上抵消了海平面运动过程中造血的益处。改良的高训练低适应性实时训练方案似乎可以捕捉低氧训练的有益造血作用,同时避免了高海拔训练的许多有害作用。由于高生活和低训练的后勤和财政障碍,已经开发和研究了多种模拟缺氧的方法。这些研究的数据表明,低氧暴露的阈值要求可显着增强造血功能,并可能改善运动表现。

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