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Locomotor-Like Leg Movements Evoked by Rhythmic Arm Movements in Humans

机译:人类节律性手臂运动引起的类似运动的腿部运动

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摘要

Motion of the upper limbs is often coupled to that of the lower limbs in human bipedal locomotion. It is unclear, however, whether the functional coupling between upper and lower limbs is bi-directional, i.e. whether arm movements can affect the lumbosacral locomotor circuitry. Here we tested the effects of voluntary rhythmic arm movements on the lower limbs. Participants lay horizontally on their side with each leg suspended in an unloading exoskeleton. They moved their arms on an overhead treadmill as if they walked on their hands. Hand-walking in the antero-posterior direction resulted in significant locomotor-like movements of the legs in 58% of the participants. We further investigated quantitatively the responses in a subset of the responsive subjects. We found that the electromyographic (EMG) activity of proximal leg muscles was modulated over each cycle with a timing similar to that of normal locomotion. The frequency of kinematic and EMG oscillations in the legs typically differed from that of arm oscillations. The effect of hand-walking was direction specific since medio-lateral arm movements did not evoke appreciably leg air-stepping. Using externally imposed trunk movements and biomechanical modelling, we ruled out that the leg movements associated with hand-walking were mainly due to the mechanical transmission of trunk oscillations. EMG activity in hamstring muscles associated with hand-walking often continued when the leg movements were transiently blocked by the experimenter or following the termination of arm movements. The present results reinforce the idea that there exists a functional neural coupling between arm and legs.
机译:在人类双足运动中,上肢的运动通常与下肢的运动相关。然而,尚不清楚上下肢之间的功能耦合是否是双向的,即手臂的运动是否会影响腰s运动回路。在这里,我们测试了有规律的手臂有节律性运动对下肢的影响。参与者水平躺着,每条腿都悬挂在卸载的外骨骼中。他们在高架的跑步机上移动手臂,就像在走路时一样。在前后方向上的手行走导致58%的参与者的腿出现明显的运动样运动。我们进一步定量研究了反应性受试者的一个子集中的反应。我们发现近端腿部肌肉的肌电图(EMG)活动在每个周期中以与正常运动相似的时间进行调节。腿部运动和肌电图的振动频率通常与手臂的振动频率不同。步行的影响是特定于方向的,因为前臂外侧运动不会引起明显的腿部气步。使用外部施加的躯干运动和生物力学建模,我们排除了与手步有关的腿部运动主要是由于躯干振动的机械传递。当腿部运动被实验者暂时阻止或在手臂运动终止后,与手走路有关的绳肌中的EMG活动通常会继续。目前的结果加强了在手臂和腿之间存在功能性神经耦合的想法。

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