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Increased central common drive to ankle plantar flexor and dorsiflexor muscles during visually guided gait

机译:在视觉引导的步态中增加对踝plant屈和背屈肌的中央共同驱动力

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摘要

When we walk in a challenging environment, we use visual information to modify our gait and place our feet carefully on the ground. Here, we explored how central common drive to ankle muscles changes in relation to visually guided foot placement. Sixteen healthy adults aged 23?±?5?years participated in the study. Electromyography (EMG) from the Soleus (Sol), medial Gastrocnemius (MG), and the distal and proximal ends of the Tibialis anterior (TA) muscles and electroencephalography (EEG) from Cz were recorded while subjects walked on a motorized treadmill. A visually guided walking task, where subjects received visual feedback of their foot placement on a screen in real‐time and were required to place their feet within narrow preset target areas, was compared to normal walking. There was a significant increase in the central common drive estimated by TA‐TA and Sol‐MG EMG‐EMG coherence in beta and gamma frequencies during the visually guided walking compared to normal walking. EEG‐TA EMG coherence also increased, but the group average did not reach statistical significance. The results indicate that the corticospinal tract is involved in modifying gait when visually guided placement of the foot is required. These findings are important for our basic understanding of the central control of human bipedal gait and for the design of rehabilitation interventions for gait function following central motor lesions.
机译:当我们在充满挑战的环境中行走时,我们会使用视觉信息来改变步态并将脚小心地放在地面上。在这里,我们探讨了脚踝肌肉的中央共同驱动力如何与视觉引导的脚部放置有关的变化。 16名年龄在23±5岁的健康成年人参加了这项研究。当受试者在电动跑步机上行走时,记录了Soleus(Sol),腓肠肌内侧(MG)以及胫骨前肌(TA)的远端和近端的肌电图(EMG),以及Cz的脑电图(EEG)。将视觉引导的步行任务与正常的步行进行比较,在该任务中,对象会实时收到屏幕上脚的位置的视觉反馈,并要求将脚放在狭窄的预设目标区域内。与正常行走相比,在视觉引导的行走过程中,通过TA-TA和Sol-MG EMG-EMG相干性估计的中心共同驱动力在β和γ频率上显着增加。 EEG-TA EMG相干性也增加,但组平均值未达到统计学意义。结果表明,当需要视觉引导的脚放置时,皮质脊髓束与步态的改变有关。这些发现对于我们对人类双足步态的中枢控制的基本了解以及对于中枢运动损伤后步态功能的康复干预设计的设计都非常重要。

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