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手臂摆动起主导作用:当手臂交替摆动时腿部反射出现类似行走的调制。

Arm sway holds sway: locomotor-like modulation of leg reflexes when arms swing in alternation.

作者信息

Massaad F, Levin O, Meyns P, Drijkoningen D, Swinnen S P, Duysens J

机构信息

Research Center for Movement Control and Neuroplasticity, Department of Kinesiology, Faculty of Kinesiology and Rehabilitation Sciences, K.U. Leuven, Heverlee, Belgium.

Research Center for Movement Control and Neuroplasticity, Department of Kinesiology, Faculty of Kinesiology and Rehabilitation Sciences, K.U. Leuven, Heverlee, Belgium.

出版信息

Neuroscience. 2014 Jan 31;258:34-46. doi: 10.1016/j.neuroscience.2013.10.007. Epub 2013 Oct 18.

Abstract

It has been argued that arm movements are important during human gait because they affect leg activity due to neural coupling between arms and legs. Consequently, one would expect that locomotor-like alternating arm swing is more effective than in-phase swing in affecting the legs' motor output. Other alternating movements such as trunk rotation associated to arm swing could also affect leg reflexes. Here, we assessed how locomotor-like movement patterns would affect soleus H-reflexes in 13 subjects performing arm swing in the sagittal plane (ipsilateral, contralateral and bilateral in-phase versus locomotor-like anti-phase arm movements) and trunk rotation with the legs stationary, and leg stepping with the arms stationary. Findings revealed that soleus H-reflexes were suppressed for all arm, trunk or leg movements. However, a marked reflex modulation occurred during locomotor-like anti-phase arm swing, as was also the case during leg stepping, and this modulation flattened out during in-phase arm swing. This modulation had a peculiar bell shape and showed maximum suppression at a moment where the heel-strike would occur during a normal walking cycle. Furthermore, this modulation was independent from electromyographic activity, suggesting a spinal processing at premotoneuronal level. Therefore, trunk movement can affect legs' output, and a special neural coupling occurs between arms and legs when arms move in alternation. This may have implications for gait rehabilitation.

摘要

有人认为,手臂运动在人类步态中很重要,因为手臂和腿部之间的神经耦合会影响腿部活动。因此,可以预期,类似运动的交替摆臂比同相摆臂在影响腿部运动输出方面更有效。其他与摆臂相关的交替运动,如躯干旋转,也可能影响腿部反射。在这里,我们评估了类似运动的模式如何影响13名受试者的比目鱼肌H反射,这些受试者在矢状面进行摆臂(同侧、对侧和双侧同相摆动与类似运动的反相摆臂),腿部静止时进行躯干旋转,手臂静止时进行腿部踏步。研究结果显示,所有手臂、躯干或腿部运动都会抑制比目鱼肌H反射。然而,在类似运动的反相摆臂过程中出现了明显的反射调制,腿部踏步时也是如此,而在同相摆臂过程中这种调制趋于平缓。这种调制具有独特的钟形,在正常步行周期中足跟触地的时刻表现出最大抑制。此外,这种调制与肌电图活动无关,表明在运动神经元前水平存在脊髓处理过程。因此,躯干运动可以影响腿部输出,当手臂交替运动时,手臂和腿部之间会发生特殊的神经耦合。这可能对步态康复有影响。

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