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[高原训练——何为真相?]

[Altitude training--what is true?].

作者信息

Boning D

机构信息

Institut fur Sportmedizin, Universitatsklinikum Benjamin Franklin, Freie Universitat Berlin.

出版信息

Dtsch Z Sportmed. 1996 Mar;47:196-200.

PMID:11540585
Abstract

Because of the importance of oxygen transport and consumption in the body for endurance performance altitude training as preparation for competitions at sea level has come into use. In hypoxia maximal O2 uptake decreases. Thus for equal work load training at altitude is harder and stimulates adaptation processes more than sea level training. A specific altitude training effect, however, can only be proven if a relative equal load (in % of VO2max) is more effective than during sea level training. In only 3 of 10 investigations with this design a significant improvement of either maximal performance, VO2max or endurance was found, in 2 there was a nonsignificant tendency. When training in hypoxia combined with living in normoxia was investigated two of four groups improved. Presumably there exists a small specific altitude effect on performance capacity, which may be counteracted by negative influences like reduced muscular metabolic intensity. A series of single physiological changes at altitude might have positive or negative influences on training success: training of ventilatory muscles, increase of hypoxic ventilatory stimulation, reduced heart training by vegetative 'braking', increase of red cell and plasma volume (the latter after descent), right shift of the oxygen dissociation curve, increase of oxidative muscle enzymes (only after hypoxia training), shift from carbohydrate to fat combustion, reduced lactic acid and ammonia production, improvement of buffering.

摘要

由于氧气在体内的运输和消耗对耐力表现至关重要,因此作为海平面比赛准备的高原训练已开始被采用。在低氧环境下,最大摄氧量会降低。因此,对于相同的工作量,高原训练比海平面训练更难,并且对适应过程的刺激更大。然而,只有当相对相等的负荷(以最大摄氧量的百分比表示)比海平面训练更有效时,才能证明特定的高原训练效果。在采用这种设计的10项研究中,只有3项发现最大运动能力、最大摄氧量或耐力有显著提高,2项有不显著的趋势。当研究在低氧环境下训练并结合常氧环境生活时,四组中有两组得到改善。据推测,高原对运动能力存在微小的特定影响,这可能会被诸如肌肉代谢强度降低等负面影响抵消。高原上一系列单一的生理变化可能对训练成功产生正面或负面影响:呼吸肌训练、低氧通气刺激增加、自主神经“制动”导致心脏训练减少、红细胞和血浆量增加(后者在下降后)、氧解离曲线右移、氧化肌肉酶增加(仅在低氧训练后)、从碳水化合物燃烧转变为脂肪燃烧、乳酸和氨生成减少、缓冲改善。

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Is hypoxia training good for muscles and exercise performance?低氧训练对肌肉和运动表现有益吗?
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