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女性前臂屈肌疲劳性动作中负荷特定的性能疲劳、共激活及神经肌肉反应

Load-Specific Performance Fatigability, Coactivation, and Neuromuscular Responses to Fatiguing Forearm Flexion Muscle Actions in Women.

作者信息

Benitez Brian, Dinyer-McNeely Taylor K, McCallum Lindsay, Kwak Minyoung, Succi Pasquale J, Bergstrom Haley C

机构信息

Department of Kinesiology and Health Promotion, University of Kentucky, Lexington, Kentucky; and.

School of Kinesiology, Applied Health and Recreation, Oklahoma State University, Stillwater, Oklahoma.

出版信息

J Strength Cond Res. 2023 Apr 1;37(4):769-779. doi: 10.1519/JSC.0000000000004379. Epub 2022 Nov 30.

Abstract

Benitez, B, Dinyer-McNeeley, TK, McCallum, L, Kwak, M, Succi, PJ, and Bergstrom, HC. Load-specific performance fatigability, coactivation, and neuromuscular responses to fatiguing forearm flexion muscle actions in women. J Strength Cond Res 37(4): 769-779, 2023-This study examined the effects of fatiguing, bilateral, dynamic constant external resistance (DCER) forearm flexion on performance fatigability, coactivation, and neuromuscular responses of the biceps brachii (BB) and triceps brachii (TB) at high (80% 1 repetition maximum [1RM]) and low (30% 1RM) relative loads in women. Ten women completed 1RM testing and repetitions to failure (RTF) at 30 and 80% 1RM. Maximal voluntary isometric force was measured before and after RTF. Electromyographic (EMG) and mechanomyographic (MMG) amplitude (AMP) and mean power frequency (MPF) signals were measured from the BB and TB. Performance fatigability was greater (p < 0.05) after RTF at 30% (%∆ = 41.56 ± 18.61%) than 80% (%∆ = 19.65 ± 8.47%) 1RM. There was an increase in the coactivation ratio (less coactivation) between the initial and final repetitions at 30%, which may reflect greater increases in agonist muscle excitation (EMG AMP) relative to the antagonist for RTF at 30% than 80% 1RM. The initial repetitions EMG AMP was greater for 80% than 30% 1RM, but there was no difference between loads for the final repetitions. For both loads, there were increases in EMG MPF and MMG AMP and decreases in MMG MPF that may suggest fatigue-dependent recruitment of higher-threshold motor units. Thus, RTF at 30 and 80% 1RM during DCER forearm flexion may not necessitate additional muscle excitation to the antagonist muscle despite greater fatigability after RTF at 30% 1RM. These specific acute performance and neuromuscular responses may provide insight into the unique mechanism underlying adaptations to training performed at varying relative loads.

摘要

贝尼特斯,B;丁耶尔 - 麦克尼利,TK;麦卡勒姆,L;夸克,M;苏奇,PJ;伯格斯特龙,HC。女性疲劳性双侧动态恒定外部阻力(DCER)前臂屈曲对肌肉力量疲劳性、协同激活及神经肌肉反应的影响。《力量与体能研究杂志》37(4): 769 - 779,2023年——本研究考察了疲劳性双侧动态恒定外部阻力(DCER)前臂屈曲对女性肱二头肌(BB)和肱三头肌(TB)在高(80% 1次重复最大值[1RM])和低(30% 1RM)相对负荷下的肌肉力量疲劳性、协同激活及神经肌肉反应的影响。10名女性完成了1RM测试以及在30%和80% 1RM负荷下的至疲劳重复次数(RTF)测试。在RTF前后测量最大自主等长力量。从BB和TB测量肌电图(EMG)和机械肌电图(MMG)的幅度(AMP)和平均功率频率(MPF)信号。在30% 1RM负荷下进行RTF后的肌肉力量疲劳性(%∆ = 41.56 ± 18.61%)大于80% 1RM负荷下的(%∆ = 19.65 ± 8.47%)(p < 0.05)。在30% 1RM负荷下,初始重复次数和最终重复次数之间的协同激活比率增加(协同激活减少),这可能反映出相对于80% 1RM负荷下的RTF,30% 1RM负荷下的RTF中,主动肌兴奋(EMG AMP)相对于拮抗肌有更大增加。80% 1RM负荷下初始重复次数的EMG AMP大于30% 1RM负荷下的,但最终重复次数时不同负荷之间无差异。对于两种负荷,EMG MPF和MMG AMP均增加,MMG MPF降低,这可能表明存在与疲劳相关的高阈值运动单位募集。因此,在DCER前臂屈曲过程中,30%和80% 1RM负荷下的RTF可能并不需要对拮抗肌进行额外的肌肉兴奋,尽管30% 1RM负荷下RTF后的疲劳性更大。这些特定的急性肌肉力量表现和神经肌肉反应可能有助于深入了解在不同相对负荷下进行训练时适应的独特机制。

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