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

机译:人体肌肉疲劳:激励和力产生的频率依赖性。

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摘要

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.
机译:1.在有或无循环闭塞的活动过程中,使用程序刺激的间歇性训练以1、1、10、20、50、100和1 Hz的频率对人的内收肌Policis进行疲劳,以研究力产生,兴奋和最大松弛率(MRR)之间的关系)。 2.力的产生与激励之间的关系明显取决于刺激频率。低频时力损失最大,激励几乎没有减少,但是尽管频率明显增加,但尽管有明显的激励损失,力仍能很好地保持。 3.活动和恢复过程中MRR的变化与刺激频率无关。 4.在有或没有循环闭塞的活动过程中,在1 Hz(强直前)和10 Hz时,力量显着增加,而兴奋性降低很少。这可能是由于强直后的强壮性,以及松弛(MRR)减慢。 5.尽管存在明显的励磁损失,但在高频下,“安全系数”可起到维持力的作用,而在低频下,尽管励磁保持不变,但仍可能具有明显的力增强作用。这些机制可以允许对疲劳的抵抗,而肌肉功能在一定条件下仍保持最佳状态。

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