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剧烈强度运动中神经肌肉疲劳、肌肉激活与临界功率以上做功之间的关系。

Relationship between neuromuscular fatigue, muscle activation and the work done above the critical power during severe-intensity exercise.

机构信息

LAMHESS, Université Côte d'Azur, Nice, France.

Mitochondria, Oxidative Stress and Muscular Protection Laboratory (UR 3072), Faculty of Medicine, University of Strasbourg, Strasbourg, France.

出版信息

Exp Physiol. 2022 Apr;107(4):312-325. doi: 10.1113/EP090043. Epub 2022 Mar 4.

Abstract

NEW FINDINGS

What is the central question of this study? Does the work done above critical power (W') or muscle activation determine the degree of peripheral fatigue induced by cycling time trials performed in the severe-intensity domain? What is the main finding and its importance? Peripheral fatigue increased when power output and muscle activation increased, whereas W' did not change between the time trials. Therefore, no relationship was found between W' and exercise-induced peripheral fatigue such as previously postulated in the literature. In contrast, we found a significant association between EMG amplitude during exercise and exercise-induced reduction in the potentiated quadriceps twitch, suggesting that muscle activation plays a key role in determining peripheral fatigue during severe-intensity exercise.

ABSTRACT

In order to determine the relationship between peripheral fatigue, muscle activation and the total work done above critical power (W'), 10 men and four women performed, on separated days, self-paced cycling time trials of 3, 6, 10 and 15 min. Exercise-induced quadriceps fatigue was quantified using pre- to postexercise (15 s to 15 min recovery) changes in maximal voluntary contraction (MVC) peak force, voluntary activation and potentiated twitch force (QT). Voluntary activation was measured using the interpolated twitch technique, and QT was evoked by electrical stimulations of the femoral nerve. Quadriceps muscle activation was determined using the root mean square of surface EMG of vastus lateralis (VL ), vastus medialis (VM ) and rectus femoris (RF ). Critical power and W' were calculated from the power-duration relationship from the four time trials. Mean power output and mean VL , VM and RF were greater during shorter compared with longer exercise periods (P < 0.05), whereas no significant between-trial change in W' was found. The magnitude of exercise-induced reductions in QT increased with the increase in power output (P < 0.001) and was associated with mean VL VM and RF (P < 0.001, r > 0.369) but not W' (P > 0.150, r < 0.044). Reduction in voluntary activation tended (P = 0.067) to be more pronounced with the lengthening in time trial duration, whereas no significant between-trial changes in MVC peak force were found. Our data suggest that peripheral fatigue is not related to the amount of work done above the critical power but rather to the level of muscle activation during exercise in the severe-intensity domain.

摘要

新发现

本研究的核心问题是什么?在剧烈强度范围内进行的自行车计时赛中,做功超过临界功率(W')或肌肉激活是否决定了外周疲劳的程度?主要发现及其重要性是什么?随着功率输出和肌肉激活的增加,外周疲劳增加,而计时赛之间 W' 没有变化。因此,与文献中先前假设的那样,没有发现 W' 与运动引起的外周疲劳之间存在关系。相比之下,我们发现运动期间的肌电图幅度与运动引起的增强四头肌抽搐的减少之间存在显著关联,这表明肌肉激活在外周疲劳的剧烈强度运动中起着关键作用。

摘要

为了确定外周疲劳、肌肉激活与做功超过临界功率(W')的总关系,10 名男性和 4 名女性在不同的日子里分别进行了 3、6、10 和 15 分钟的自定节奏自行车计时赛。通过测量最大自主收缩(MVC)峰值力、自愿激活和增强抽搐力(QT)在运动前后(15 秒至 15 分钟恢复)的变化来量化运动引起的股四头肌疲劳。自愿激活使用插值抽搐技术测量,QT 通过股神经的电刺激诱发。股四头肌激活通过股外侧肌(VL)、股内侧肌(VM)和股直肌(RF)的表面肌电图的均方根确定。从四个计时赛的功率-持续时间关系计算临界功率和 W'。与较长运动时间相比,较短运动时间的平均功率输出和平均 VL、VM 和 RF 更大(P<0.05),而 W' 则没有明显的试验间变化。QT 的运动引起的减少幅度随着功率输出的增加而增加(P<0.001),并且与平均 VL VM 和 RF 相关(P<0.001,r>0.369),但与 W' 无关(P>0.150,r<0.044)。自愿激活的减少趋势(P=0.067)与计时赛持续时间的延长更为明显,而 MVC 峰值力在试验间没有明显变化。我们的数据表明,外周疲劳与做功超过临界功率的量无关,而与剧烈强度范围内运动期间的肌肉激活水平有关。

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