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窄袖带与宽袖带血流限制对肌肉协同动力学的比较效应:一种时频分解方法。

Comparative Effects of Narrow vs. Wide Cuff Blood Flow Restriction on Muscle Synergy Dynamics: A Time-Frequency Decomposition Approach.

作者信息

Chang Shuai, Hu Chenxi

机构信息

Department of Physical Education, Capital Normal University, No. 105 West Third Ring Road North, Haidian District, Beijing 100048, China.

Sport Biomechanics Center, Institute of Artificial Intelligence in Sports, Capital University of Physical Education and Sports, No. 11 North Third Ring Road West, Beijing 100191, China.

出版信息

Sensors (Basel). 2025 May 16;25(10):3154. doi: 10.3390/s25103154.

Abstract

Blood Flow Restriction Training (BFRT) is a training method typically performed with low-intensity loads, yet it has been shown to induce muscle growth and strength gains similar to those achieved through high-load resistance training. This study investigates how different cuff widths affect muscle activation and synergy during squat exercises under BFRT conditions, using wavelet packet transform combined with non-negative matrix factorization (WPT-NNMF) for time-frequency analysis of muscle synergy. Fifteen male participants, each with more than three years of resistance training experience, performed squats under three conditions: non-BFRT (Non-BFRT), BFRT with a 5 cm cuff (5 cm-BFRT), and BFRT with a 10 cm cuff (10 cm-BFRT), all at 30% of their one-repetition maximum (1RM). Surface electromyography (sEMG) signals were recorded from eight lower-limb muscles, and muscle synergy patterns were analyzed using NNMF and WPT-NNMF. The results showed that, compared to Non-BFRT, the 10 cm-BFRT condition significantly increased activation in the vastus lateralis (VL), gluteus maximus (GM), tibialis anterior (TA), and lateral gastrocnemius (GL), while the 5 cm-BFRT decreased activation in the biceps femoris (BF) and increased TA activation. Muscle synergy analysis revealed three distinct synergy modules across all conditions, with the total number of synergies remaining stable. However, the activation weights of muscles within these modules varied across different squat phases, suggesting adaptive neuromuscular regulation under different BFRT conditions. The time-frequency synergy analysis highlighted dynamic changes in muscle coordination across time scales and frequency bands under various training conditions. The number of muscle synergies showed significant changes across different time-frequency regions, with a marked decrease in the 120-250 Hz frequency range in the 5 cm-BFRT condition compared to Non-BFRT. This study is the first to apply time-frequency muscle synergy analysis to investigate the effects of cuff width on neuromuscular coordination during BFRT. The findings offer new insights into the time-frequency characteristics of muscle synergy under BFRT conditions and enhance the understanding of neuromuscular control and motor execution in blood flow restriction training.

摘要

血流限制训练(BFRT)是一种通常在低强度负荷下进行的训练方法,但已被证明能诱导肌肉生长和力量增加,其效果与通过高负荷阻力训练所达到的效果相似。本研究使用小波包变换结合非负矩阵分解(WPT-NNMF)对肌肉协同作用进行时频分析,探究在BFRT条件下不同袖带宽度如何影响深蹲练习期间的肌肉激活和协同作用。15名男性参与者,每人都有超过三年的阻力训练经验,在三种条件下进行深蹲:非BFRT(Non-BFRT)、使用5厘米袖带的BFRT(5厘米-BFRT)和使用10厘米袖带的BFRT(10厘米-BFRT),所有条件下的负荷均为其一次重复最大值(1RM)的30%。从八块下肢肌肉记录表面肌电图(sEMG)信号,并使用NNMF和WPT-NNMF分析肌肉协同模式。结果表明,与Non-BFRT相比,10厘米-BFRT条件下股外侧肌(VL)、臀大肌(GM)、胫骨前肌(TA)和腓骨外侧肌(GL)的激活显著增加,而5厘米-BFRT条件下股二头肌(BF)的激活减少,TA的激活增加。肌肉协同分析揭示了所有条件下三个不同的协同模块,协同作用的总数保持稳定。然而,这些模块内肌肉的激活权重在不同深蹲阶段有所不同,表明在不同BFRT条件下存在适应性神经肌肉调节。时频协同分析突出了在各种训练条件下肌肉协调在时间尺度和频带方面的动态变化。肌肉协同作用的数量在不同时频区域显示出显著变化,与Non-BFRT相比,5厘米-BFRT条件下在120 - 250赫兹频率范围内显著减少。本研究首次应用时频肌肉协同分析来研究袖带宽度对BFRT期间神经肌肉协调的影响。这些发现为BFRT条件下肌肉协同的时频特征提供了新的见解,并增强了对血流限制训练中神经肌肉控制和运动执行的理解。

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