University of Texas Health Science Center, Houston, TX, United States.
J Electromyogr Kinesiol. 2011 Oct;21(5):847-53. doi: 10.1016/j.jelekin.2011.06.001. Epub 2011 Jun 25.
Mechanical oscillation (vibration) is an osteogenic stimulus for bone in animal models and may hold promise as an anti-osteoporosis measure in humans with spinal cord injury (SCI). However, the level of reflex induced muscle contractions associated with various loads (g force) during limb segment oscillation is uncertain. The purpose of this study was to determine whether certain gravitational loads (g forces) at a fixed oscillation frequency (30 Hz) increases muscle reflex activity in individuals with and without SCI. Nine healthy subjects and two individuals with SCI sat with their hip and knee joints at 90° and the foot secured on an oscillation platform. Vertical mechanical oscillations were introduced at 0.3, 0.6, 1.2, 3 and 5 g force for 20 s at 30 Hz. Non-SCI subjects received the oscillation with and without a 5% MVC background contraction. Peak soleus and tibialis anterior (TA) EMG were normalized to M-max. Soleus and TA EMG were <2.5% of M-max in both SCI and non-SCI subjects. The greatest EMG occurred at the highest acceleration (5 g). Low magnitude mechanical oscillation, shown to enhance bone anabolism in animal models, did not elicit high levels of reflex muscle activity in individuals with and without SCI. These findings support the g force modulated background muscle activity during fixed frequency vibration. The magnitude of muscle activity was low and likely does not influence the load during fixed frequency oscillation of the tibia.
机械振动(振动)是动物模型中骨的成骨刺激物,并且可能作为脊髓损伤(SCI)患者的抗骨质疏松措施有一定的前景。然而,肢体段振动时与各种负荷(g 力)相关的反射引起的肌肉收缩的水平尚不确定。本研究的目的是确定在固定振动频率(30 Hz)下,某些重力负荷(g 力)是否会增加 SCI 患者和非 SCI 患者的肌肉反射活动。9 名健康受试者和 2 名 SCI 患者坐在 90°髋关节和膝关节,脚固定在振动平台上。0.3、0.6、1.2、3 和 5 g 力以 30 Hz 的频率持续 20 s。非 SCI 受试者在有无 5%MVC 背景收缩的情况下接受振动。将比目鱼肌和胫骨前肌(TA)的 EMG 峰值归一化为 M-max。在 SCI 和非 SCI 受试者中,比目鱼肌和 TA 的 EMG 均<2.5%的 M-max。最大的 EMG 出现在最高加速度(5 g)时。在动物模型中,已显示低幅度机械振动可增强骨合成代谢,但在 SCI 和非 SCI 患者中并未引起高水平的反射肌肉活动。这些发现支持在固定频率振动时,g 力调制背景肌肉活动。肌肉活动的幅度很小,并且在胫骨的固定频率振动期间可能不会影响负荷。