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血流限制调节运动单位的共同驱动和力量精度:对神经肌肉协调的影响。

Blood flow restriction modulates common drive to motor units and force precision: implications for neuromuscular coordination.

作者信息

Wu Chia-Chan, Lin Yen-Ting, Chen Yueh, Chen Yi-Ching, Hwang Ing-Shiou

机构信息

Institute of Allied Health Sciences, College of Medicine, National Cheng-Kung University, Tainan, 701, Taiwan.

Department of Ball Sport, National Taiwan University of Sport, Taichung, Taiwan.

出版信息

Eur J Appl Physiol. 2025 Sep 17. doi: 10.1007/s00421-025-05974-0.

Abstract

PURPOSE

Blood flow restriction (BFR) is a resistance training technique that enhances muscle adaptation and strength gains under hypoxic conditions. However, its impact on motor unit (MU) coordination remains unclear. This study investigated how BFR influences intra- and inter-muscular common drives to MUs in two functional agonists during a static precision pinch task.

METHODS

Eighteen adults (23.9 ± 1.3 years; nine men, nine women) performed a thumb-index finger precision pinch under BFR and non-BFR conditions, while force fluctuation dynamics and MU activities in the flexor pollicis brevis (FPB) and first dorsal interosseous (FDI) were analyzed.

RESULTS

The results revealed a significant reduction in maximal voluntary contraction following BFR application (p = 0.003). In addition, BFR significantly increased force fluctuations (p = 0.007), potentiated discharge variability (p = 0.018), and strengthened force-discharge coupling specifically in the FPB (p = 0.010). BFR increased the mean recruitment threshold of motor units in the FDI (p < 0.001), but not in the FPB (p > 0.05) during finger precision pinch. Intra-muscular common drive increased within the FDI (p < 0.001) and FPB (p < 0.001), whereas inter-muscular common drive between agonist MUs decreased (p < 0.001).

CONCLUSION

BFR application disrupts force precision stability and neuromuscular coordination between functional agonists during precision pinch. It increases global discharge variability and intra-muscular MU synchrony. However, the resulting force fluctuations are only partially compensated by reduced inter-muscular MU synchrony, offering limited coordination flexibility among agonists.

摘要

目的

血流限制(BFR)是一种阻力训练技术,可在缺氧条件下增强肌肉适应性和力量增长。然而,其对运动单位(MU)协调性的影响尚不清楚。本研究调查了BFR如何在静态精准捏取任务中影响两个功能性主动肌中运动单位的肌内和肌间共同驱动。

方法

18名成年人(23.9±1.3岁;9名男性,9名女性)在BFR和非BFR条件下进行拇指-示指精准捏取,同时分析拇短屈肌(FPB)和第一骨间背侧肌(FDI)的力波动动态和运动单位活动。

结果

结果显示,施加BFR后最大自主收缩显著降低(p = 0.003)。此外,BFR显著增加了力波动(p = 0.007)、增强了放电变异性(p = 0.018),并特别增强了FPB中的力-放电耦合(p = 0.010)。在手指精准捏取过程中,BFR增加了FDI中运动单位的平均募集阈值(p < 0.001),但在FPB中未增加(p > 0.05)。FDI(p < 0.001)和FPB(p < 0.001)内的肌内共同驱动增加,而主动肌运动单位之间的肌间共同驱动减少(p < 0.001)。

结论

施加BFR会破坏精准捏取过程中功能性主动肌之间的力精准稳定性和神经肌肉协调性。它增加了整体放电变异性和肌内运动单位同步性。然而,由此产生的力波动仅通过减少肌间运动单位同步性得到部分补偿,主动肌之间的协调灵活性有限。

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