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间歇性最大自主收缩后M波第一相和第二相的不同恢复情况。

Different recoveries of the first and second phases of the M-wave after intermittent maximal voluntary contractions.

作者信息

Rodriguez-Falces Javier, Place Nicolas

机构信息

Department of Electrical and Electronical Engineering, Public University of Navarra, Campus de Arrosadía s/n., 31006, Pamplona, Spain.

Institute of Sport Sciences, University of Lausanne, Lausanne, Switzerland.

出版信息

Eur J Appl Physiol. 2017 Apr;117(4):607-618. doi: 10.1007/s00421-017-3553-9. Epub 2017 Feb 22.

Abstract

PURPOSE

We investigated the recovery of muscle electrical properties after intermittent intense exercise by examining separately the first and second phases of the muscle compound action potential (M-wave).

METHODS

M-waves and mechanical twitches were obtained using femoral nerve stimulation throughout the 30-min recovery period following 48 successive intermittent 3-s MVCs. The amplitude, duration, and area of the M-wave first and second phases, and the peak twitch force were measured from the knee extensors.

RESULTS

The amplitudes of both the first and second M-wave phases were increased immediately after exercise (P < 0.05), but, whereas the first phase remained enlarged for 5 min after exercise, the increase of the second phase only lasted for 10 s. After 30 min of recovery, the amplitude, area, and duration of both the first and second phases were decreased compared to control values (10-20%, P < 0.05). A significant temporal association was found between the changes in the amplitude and duration of the M-wave first phase (maximal cross correlations, 0.9-0.93; time lag, 0 s). A significant, negative temporal relation was found between the amplitude of the M-wave first phase and the peak twitch force during recovery (P < 0.05).

CONCLUSIONS

The prolonged enlargement of the M-wave first phase during recovery seems primarily related to fatigue-induced changes in membrane properties, whereas the extremely short recovery of the second phase might be related to changes in muscle architectural features. It is concluded that muscle excitability is impaired even after intermittent fatiguing contractions which allow partial clearance of extracellular K.

摘要

目的

通过分别检查肌肉复合动作电位(M波)的第一和第二阶段,研究间歇性剧烈运动后肌肉电特性的恢复情况。

方法

在连续进行48次3秒最大自主收缩(MVC)后的30分钟恢复期间,通过刺激股神经获得M波和机械性抽搐。测量股四头肌的M波第一和第二阶段的振幅、持续时间和面积,以及抽搐峰值力。

结果

运动后M波第一和第二阶段的振幅立即增加(P<0.05),但是,第一阶段在运动后5分钟内仍保持增大,而第二阶段的增加仅持续10秒。恢复30分钟后,第一和第二阶段的振幅、面积和持续时间与对照值相比均降低(10-20%,P<0.05)。发现M波第一阶段的振幅和持续时间变化之间存在显著的时间相关性(最大交叉相关性,0.9-0.93;时间滞后,0秒)。在恢复过程中,发现M波第一阶段的振幅与抽搐峰值力之间存在显著的负时间关系(P<0.05)。

结论

恢复过程中M波第一阶段的延长增大似乎主要与疲劳引起的膜特性变化有关,而第二阶段极短的恢复可能与肌肉结构特征的变化有关。得出的结论是,即使在间歇性疲劳收缩后,肌肉兴奋性也会受损,尽管这种收缩允许细胞外钾部分清除。

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