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Interlimb Coordination in Body-Weight Supported Locomotion: A Pilot Study

机译:体重支持运动的肢体协调:一项初步研究

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摘要

Locomotion involves complex neural networks responsible for automatic and volitional actions. During locomotion, motor strategies can rapidly compensate for any obstruction or perturbation that could interfere with forward progression. In this pilot study, we examined the contribution of interlimb pathways for evoking muscle activation patterns in the contralateral limb when a unilateral perturbation was applied and in the case where body weight was externally supported. In particular, the latency of neuromuscular responses was measured, while the stimulus to afferent feedback was limited. The pilot experiment was conducted with six healthy young subjects. It employed the MIT-Skywalker (beta-prototype), a novel device intended for gait therapy. Subjects were asked to walk on the split-belt treadmill, while a fast unilateral perturbation was applied mid-stance by unexpectedly lowering one side of the split-treadmill walking surfaces. Subject's weight was externally supported via the body-weight support system consisting of an underneath bicycle seat and the torso was stabilized via a loosely fitted chest harness. Both the weight support and the chest harness limited the afferent feedback. The unilateral perturbations evoked changes in the electromyographic activity of the non-perturbed contralateral leg. The latency of all muscle responses exceeded 100 ms, which precludes the conjecture that spinal cord alone is responsible for the perturbation response. It suggests the role of supraspinal or midbrain level pathways at the inter-leg coordination during gait.
机译:运动涉及负责自动和自愿动作的复杂神经网络。在运动过程中,运动策略可以迅速补偿可能干扰向前发展的任何阻塞或干扰。在这项前期研究中,我们研究了单侧扰动和外部支撑体重的情况下,跨肢途径对对侧肢体肌肉激活模式的影响。特别地,测量了神经肌肉反应的潜伏期,而对传入反馈的刺激是有限的。对六个健康的年轻受试者进行了先导实验。它采用了MIT-Skywalker(β型),这是一种用于步态治疗的新型设备。要求受试者在皮带式跑步机上行走,同时在中间姿势下通过意外地降低跑步机行走表面的一侧而施加快速的单侧扰动。受试者的体重由自行车下方的体重支撑系统外部支撑,躯干通过松散安装的胸背带得以稳定。重量支撑和胸部背带都限制了传入的反馈。单侧摄动引起未摄动对侧腿的肌电活动变化。所有肌肉反应的潜伏期都超过了100 ms,这排除了仅由脊髓负责微扰反应的推测。这表明步态上腿上协调在脊髓上或中脑水平通路中的作用。

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