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高强度股四头肌运动期间及之后皮质脊髓变化的动态过程

Dynamics of corticospinal changes during and after high-intensity quadriceps exercise.

作者信息

Gruet Mathieu, Temesi John, Rupp Thomas, Levy Patrick, Verges Samuel, Millet Guillaume Y

机构信息

Université Grenoble-Alpes, Laboratoire HP2, F-38000, Grenoble, France INSERM, U1042, F-38000, Grenoble, France Laboratoire Motricité Humaine, Education, Sport, Santé, Université de Toulon, France.

Université de Lyon, F-42023, Saint-Etienne, France Human Performance Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.

出版信息

Exp Physiol. 2014 Aug;99(8):1053-64. doi: 10.1113/expphysiol.2014.078840. Epub 2014 Jun 6.

Abstract

This study tested the hypothesis that during fatiguing quadriceps exercise, supraspinal fatigue develops late, is associated with both increased corticospinal excitability and inhibition and recovers quickly. Eight subjects performed 20 s contractions [15 s at 50% maximal voluntary contraction (MVC) followed by 5 s MVC] separated by a 10 s rest period until task failure. Transcranial magnetic stimulation (TMS) and electrical femoral nerve stimulation (PNS) were delivered ∼ 2 s apart during 50% MVC, during MVC and after MVC in relaxed muscle. Voluntary activation was assessed by TMS (VATMS) immediately before and after exercise and then three times over a 6 min recovery period. During exercise, MVC and twitch force evoked by PNS in relaxed muscle decreased progressively to 48 ± 8 and 36 ± 16% of control values, respectively (both P < 0.01). Significant changes in voluntary activation assessed by PNS and twitch evoked by TMS during MVC were observed during the last quarter of exercise only (from 96.4 ± 1.7 to 86 ± 13%, P = 0.03 and from 0.76 ± 0.8 to 4.9 ± 4.7% MVC, P = 0.02, from baseline to task failure, respectively). The TMS-induced silent period increased linearly during both MVC (by ∼ 79 ms) and 50% MVC (by ∼ 63 ms; both P < 0.01). Motor-evoked potential amplitude did not change during the protocol at any force levels. Both silent period and VATMS recovered within 2 min postexercise, whereas MVC and twitch force evoked by PNS in relaxed muscle recovered to only 84 ± 9 and 73 ± 17% of control values 6 min after exercise, respectively. In conclusion, high-intensity single-joint quadriceps exercise induces supraspinal fatigue near task failure, with increased intracortical inhibition and, in contrast to previous upper-limb results, unchanged corticospinal excitability. These changes recover rapidly after task failure, emphasizing the need to measure corticospinal adaptations immediately at task failure to avoid underestimation of exercise-induced corticospinal changes.

摘要

本研究验证了以下假设

在股四头肌疲劳性运动过程中,脊髓上疲劳出现较晚,与皮质脊髓兴奋性和抑制作用的增强均相关,且恢复迅速。8名受试者进行20秒的收缩动作[15秒50%最大自主收缩(MVC),随后5秒MVC],每次收缩之间有10秒的休息时间,直至任务失败。在50%MVC、MVC期间以及MVC后放松肌肉时,经颅磁刺激(TMS)和股神经电刺激(PNS)间隔约2秒施加。在运动前和运动后立即通过TMS评估自主激活(VATMS),然后在6分钟的恢复期内评估三次。运动期间,PNS在放松肌肉中诱发的MVC和抽搐力分别逐渐下降至对照值的48±8%和36±16%(均P<0.01)。仅在运动的最后四分之一时间内观察到MVC期间通过PNS评估的自主激活和TMS诱发的抽搐有显著变化(从96.4±1.7%至86±13%,P = 0.03;从0.76±0.8%MVC至4.9±4.7%MVC,P = 0.02,分别从基线至任务失败)。在MVC和50%MVC期间,TMS诱发的静息期均呈线性增加(分别增加约79毫秒和约63毫秒;均P<0.01)。在整个实验过程中,任何力量水平下运动诱发电位幅度均未改变。静息期和VATMS在运动后2分钟内恢复,而PNS在放松肌肉中诱发的MVC和抽搐力在运动后6分钟仅分别恢复至对照值的84±9%和73±17%。总之,高强度单关节股四头肌运动在任务接近失败时诱发脊髓上疲劳,伴有皮质内抑制作用增强,与先前上肢研究结果相反,皮质脊髓兴奋性未改变。这些变化在任务失败后迅速恢复,强调了在任务失败时立即测量皮质脊髓适应性的必要性,以避免低估运动诱发的皮质脊髓变化。

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