Balsom P D, Gaitanos G C, Ekblom B, Sjödin B
Karolinska Institute, Department of Physiology and Pharmacology, Stockholm, Sweden.
Acta Physiol Scand. 1994 Nov;152(3):279-85. doi: 10.1111/j.1748-1716.1994.tb09807.x.
This study examined the influence of reduced oxygen availability on the ability to perform repeated bouts of high intensity exercise on a cycle ergometer. Seven male physical education students performed 10 exercise bouts (of 6 s each), interspersed with 30-s recovery periods, under hypoxic and normoxic conditions. The hypoxic condition was carried out in a low pressure chamber at 526 mmHg. Subjects were instructed to try to maintain a target pedalling speed of 140 rev min-1 during each exercise period. The mean power output of the first exercise bout was approximately 950 W. In both experimental conditions, all subjects were able to maintain the target speed for the first 3 s of each of the 10 exercise bouts. During the last 3-s interval of each exercise period the target speed was not maintained in both conditions over the 10 sprints. However, the reduction was greater in the hypoxic condition (P < 0.05). Post-exercise blood lactate accumulation was higher with hypoxia [10.3 (0.7) vs. 8.5 (0.8) mmol l-1, P < 0.05]. Oxygen uptake, measured during the exercise and recovery periods of sprints 6-9, was lower in the hypoxic condition [3.03 (0.2) vs. 3.19 (0.2) 1 min-1, P < 0.05]. These results indicate that a reduction in oxygen availability during high intensity intermittent exercise results in a higher accumulation of blood lactate and a lower oxygen uptake. The ability to maintain a high power output is impaired.
本研究考察了氧供应减少对在自行车测力计上进行重复高强度运动能力的影响。七名男性体育专业学生在低氧和常氧条件下进行了10次运动回合(每次6秒),中间穿插30秒的恢复期。低氧条件在526 mmHg的低压舱中进行。受试者被要求在每个运动期间尽量保持140转/分钟的目标蹬踏速度。第一次运动回合的平均功率输出约为950瓦。在两种实验条件下,所有受试者在10次运动回合中的每次前3秒都能保持目标速度。在每个运动期的最后3秒间隔内,在10次冲刺中两种条件下目标速度均未得到保持。然而,低氧条件下的下降幅度更大(P<0.05)。低氧时运动后血乳酸积累更高[10.3(0.7)对8.5(0.8)mmol/L,P<0.05]。在第6-9次冲刺的运动和恢复期间测量的摄氧量,低氧条件下更低[3.03(0.2)对3.19(0.2)升/分钟,P<0.05]。这些结果表明,高强度间歇运动期间氧供应减少会导致血乳酸积累增加和摄氧量降低。维持高功率输出的能力受损。