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人类肌肉疲劳:兴奋与力量产生的频率依赖性。

Human muscle fatigue: frequency dependence of excitation and force generation.

作者信息

Cooper R G, Edwards R H, Gibson H, Stokes M J

机构信息

Department of Medicine, University of Liverpool.

出版信息

J Physiol. 1988 Mar;397:585-99. doi: 10.1113/jphysiol.1988.sp017020.

Abstract
  1. Human adductor pollicis was fatigued using intermittent trains of programmed stimulation at 1, 10, 20, 50, 100 and 1 Hz, during activity with and without circulatory occlusion, to investigate the relationships between force generation, excitation and maximal relaxation rate (MRR). 2. The relationship between force generation and excitation was markedly dependent on stimulation frequency. Force loss was greatest at low frequencies, with little reduction in excitation, but as frequency increased force was well maintained despite marked loss of excitation. 3. Changes in MRR during activity and recovery were independent of stimulation frequency. 4. Marked increases of force at 1 Hz (pre-tetanic) and 10 Hz occurred, with little reduction in excitation, during activity with and without circulatory occlusion. This may be due to post-tetanic potentiation in addition to slowing of relaxation (MRR). 5. At high frequency a 'safety factor' may thus operate to maintain force, despite obvious loss of excitation, while at low frequencies there may be marked potentiation of force, despite unchanged excitation. These mechanisms could permit resistance to fatigue with muscle function remaining optimal over a range of conditions.
摘要
  1. 在有和没有循环阻断的活动期间,使用1、10、20、50、100和1赫兹的间歇性程控刺激来使人类拇内收肌疲劳,以研究力量产生、兴奋和最大舒张速率(MRR)之间的关系。2. 力量产生与兴奋之间的关系明显取决于刺激频率。在低频时力量损失最大,兴奋几乎没有降低,但随着频率增加,尽管兴奋明显丧失,力量仍能很好地维持。3. 活动和恢复期间MRR的变化与刺激频率无关。4. 在有和没有循环阻断的活动期间,在1赫兹(强直前)和10赫兹时出现了明显的力量增加,兴奋几乎没有降低。这可能除了舒张减慢(MRR)外还归因于强直后增强。5. 因此,在高频时,尽管兴奋明显丧失,可能存在一个“安全因子”来维持力量,而在低频时,尽管兴奋不变,力量可能会有明显增强。这些机制可以使肌肉在一系列条件下保持最佳功能的同时抵抗疲劳。

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本文引用的文献

1
Voluntary strength and fatigue.自主力量与疲劳。
J Physiol. 1954 Mar 29;123(3):553-64. doi: 10.1113/jphysiol.1954.sp005070.
10
Human muscle function and fatigue.人类肌肉功能与疲劳。
Ciba Found Symp. 1981;82:1-18. doi: 10.1002/9780470715420.ch1.

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