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有氧运动和无氧运动阈值下稳态运动中的肌肉代谢、血乳酸和摄氧量。

Muscle metabolism, blood lactate and oxygen uptake in steady state exercise at aerobic and anaerobic thresholds.

作者信息

Rusko H, Luhtanen P, Rahkila P, Viitasalo J, Rehunen S, Härkönen M

出版信息

Eur J Appl Physiol Occup Physiol. 1986;55(2):181-6. doi: 10.1007/BF00715002.

Abstract

Muscle metabolites and blood lactate concentration were studied in five male subjects during five constant-load cycling exercises. The power outputs were below, equal to and above aerobic (AerT) and anaerobic (AnT) threshold as determined during an incremental leg cycling test. At AerT, muscle lactate had increased significantly (p less than 0.05) from the rest value of 2.31 to 5.56 mmol X kg-1 wet wt. This was accompanied by a significant reduction in CP by 28% (p less than 0.05), whereas only a minor change (9%) was observed for ATP. At AnT muscle lactate had further increased and CP decreased although not significantly as compared with values at AerT. At the highest power outputs (greater than AnT) muscle lactate had increased (p less than 0.01) and CP decreased (p less than 0.01) significantly from the values observed at AnT. Furthermore, a significant reduction (p less than 0.05) in ATP over resting values was recorded. Blood lactate decreased significantly (p less than 0.01) during the last half of the lowest 5 min exercise, remained unchanged at AerT and increased significantly (p less than 0.05-0.01) at power outputs greater than or equal to AnT. It is concluded that anaerobic muscle metabolism is increased above resting values at AerT: at low power outputs (less than or equal to AerT) this could be related to the transient oxygen deficit during the onset of exercise or the increase in power output. At high power outputs (greater than AnT) anaerobic energy production is accelerated and it is suggested that AnT represents the upper limit of power output where lactate production and removal may attain equilibrium during constant load exercise.

摘要

在五项恒定负荷的自行车运动中,对五名男性受试者的肌肉代谢物和血乳酸浓度进行了研究。功率输出低于、等于以及高于递增式腿部自行车测试中确定的有氧(AerT)和无氧(AnT)阈值。在AerT时,肌肉乳酸从静息值2.31显著增加(p小于0.05)至5.56 mmol·kg⁻¹湿重。同时,磷酸肌酸(CP)显著降低了28%(p小于0.05),而三磷酸腺苷(ATP)仅出现了轻微变化(9%)。在AnT时,肌肉乳酸进一步增加,CP降低,尽管与AerT时的值相比无显著差异。在最高功率输出(大于AnT)时,肌肉乳酸显著增加(p小于0.01),CP显著降低(p小于0.01),与AnT时观察到的值相比。此外,ATP相对于静息值显著降低(p小于0.05)。在最低强度的5分钟运动的后半段,血乳酸显著降低(p小于0.01),在AerT时保持不变,在功率输出大于或等于AnT时显著增加(p小于0.05 - 0.01)。结论是,在AerT时,无氧肌肉代谢高于静息值增加:在低功率输出(小于或等于AerT)时,这可能与运动开始时的短暂氧亏或功率输出增加有关。在高功率输出(大于AnT)时,无氧能量产生加速,并且表明AnT代表了恒定负荷运动中乳酸产生和清除可能达到平衡的功率输出上限。

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