Hultman E, Söderlund K
Department of Clinical Chemistry II, Huddinge University Hospital, Sweden.
Eur J Appl Physiol Occup Physiol. 1988;58(3):225-7. doi: 10.1007/BF00417253.
The glycogen content was measured in biopsy sample of human vastus lateralis muscle during prolonged isometric contraction with low force generation. In the first experiment 15% of the maximum voluntary contraction force (MVC) was held for 10 min. Glycogen utilization was 68.1 mmol glucosyl units.kg-1 dry muscle (d.m.). The study was continued by intermittent contractions of 50 s duration and 10 s rest repeated for 50 min. This resulted in a total glycogen utilization of 167.5 mmol glycosyl units.kg-1 d.m. The study was repeated with a force set of 7.5% MVC starting with 20 min continuous contraction followed by the same intermittent contractions for a further 100 min. The glycogen decrease was 15 mmol after the continuous contraction and totally 50 mmol after 2 h with the lower force. Thus the glycogen degradation rate even at low contraction force was related to the force level, being 6 times higher when the force was increased from 7.5 to 15% MVC. With prolonged isometric work periods at work loads corresponding to 15% MVC or higher depletion of the glycogen store can limit work performance capacity.
在低力量产生的长时间等长收缩过程中,对人体股外侧肌活检样本中的糖原含量进行了测量。在第一个实验中,以最大自主收缩力(MVC)的15%保持10分钟。糖原利用率为68.1毫摩尔葡萄糖基单位·千克-1干肌肉(d.m.)。该研究通过持续50秒收缩和10秒休息的间歇性收缩持续进行50分钟。这导致糖原总利用率为167.5毫摩尔糖基单位·千克-1 d.m.。以7.5%MVC的力量设置重复该研究,先进行20分钟持续收缩,然后再进行100分钟相同的间歇性收缩。持续收缩后糖原减少15毫摩尔,较低力量下2小时后总计减少50毫摩尔。因此,即使在低收缩力下,糖原降解率也与力量水平相关,当力量从7.5%增加到15%MVC时,糖原降解率提高6倍。在对应于15%MVC或更高的工作负荷下进行长时间等长工作时,糖原储备的耗尽会限制工作能力。