IEEE Trans Neural Syst Rehabil Eng. 2024;32:3773-3781. doi: 10.1109/TNSRE.2024.3471856. Epub 2024 Oct 14.
Vibration exercise (VE) has shown promising results for improving muscle strength and power performance when superimposed on high-level muscle contraction. However, low-level contraction may be more preferable in many rehabilitation programs due to the weakness of the patients. Unfortunately, the effects and underlying physiological mechanisms of VE superimposed on low-level contraction are unclear. This study aims to investigate the fatiguing effects and motor unit (MU) firing patterns during VE with low-level muscle contraction. Twenty-one healthy participants performed 60-s isometric contraction of the upper limb under a baseline force at 30% maximum voluntary contraction and superimposed vibration with an amplitude of 50% baseline and different frequencies at 0 Hz (control), 15, 25, 35, and 45 Hz. High-density surface electromyography (EMG) was recorded on the biceps brachii. The decay in muscle fiber conduction velocity, calculated in 3-s sliding windows, was employed as an indicator of myoelectric fatigue. MU firing patterns were obtained by decomposing the high-density EMG into MU spike trains. VE, particularly at 25 Hz, produces increased myoelectric fatigue as compared to the control condition. Besides, synchronized MU discharges are observed at the vibration frequency for 15- and 25-Hz VE and the sub-harmonics for 35- and 45-Hz VE. Furthermore, VE-induced increase in MU synchronization (as compared to control) seems to decrease with myoelectric fatigue. Significance: Our findings suggest that VE may be a suitable modality for rehabilitation programs, providing useful insights for subscribing appropriate VE training protocols.
振动训练(VE)在与高强度肌肉收缩叠加时,已显示出改善肌肉力量和功率表现的良好效果。然而,由于患者的虚弱,在许多康复计划中,低水平收缩可能更为可取。不幸的是,VE 叠加在低水平收缩上的效果和潜在生理机制尚不清楚。本研究旨在研究低水平肌肉收缩时 VE 对肌肉疲劳的影响和运动单位(MU)放电模式。21 名健康参与者在 30%最大自主收缩力下进行 60 秒的上肢等长收缩,并叠加振幅为 50%基线的振动,频率分别为 0 Hz(对照)、15、25、35 和 45 Hz。肱二头肌上记录高密度表面肌电图(EMG)。在 3 秒滑动窗口中计算肌肉纤维传导速度的衰减,作为肌电疲劳的指标。通过将高密度 EMG 分解为 MU 尖峰序列来获得 MU 放电模式。与对照条件相比,VE 特别是在 25 Hz 时会产生更高的肌电疲劳。此外,在 15- 和 25-Hz VE 时观察到与振动频率同步的 MU 放电,在 35- 和 45-Hz VE 时观察到次谐波。此外,与对照相比,VE 诱导的 MU 同步增加(与对照相比)似乎随着肌电疲劳的增加而减少。意义:我们的发现表明,VE 可能是康复计划的一种合适方式,为制定适当的 VE 训练方案提供了有用的见解。