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Corticomuscular control of walking in older people and people with Parkinson’s disease

机译:在老年人和帕金森病的人们走路的皮质瘤控制

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摘要

Changes in human gait resulting from ageing or neurodegenerative diseases are multifactorial. Here we assess the effects of age and Parkinson’s disease (PD) on corticospinal activity recorded during treadmill and overground walking. Electroencephalography (EEG) from 10 electrodes and electromyography (EMG) from bilateral tibialis anterior muscles were acquired from 22 healthy young, 24 healthy older and 20 adults with PD. Event-related power, corticomuscular coherence (CMC) and inter-trial coherence were assessed for EEG from bilateral sensorimotor cortices and EMG during the double-support phase of the gait cycle. CMC and EMG power at low beta frequencies (13–21?Hz) was significantly decreased in older and PD participants compared to young people, but there was no difference between older and PD groups. Older and PD participants spent shorter time in the swing phase than young individuals. These findings indicate age-related changes in the temporal coordination of gait. The decrease in low-beta CMC suggests reduced cortical input to spinal motor neurons in older people during the double-support phase. We also observed multiple changes in electrophysiological measures at low-gamma frequencies during treadmill compared to overground walking, indicating task-dependent differences in corticospinal locomotor control. These findings may be affected by artefacts and should be interpreted with caution.
机译:衰老或神经变性疾病引起的人站的变化是多因素。在这里,我们评估年龄和帕金森病(PD)对跑步机和地下行走期间记录的皮质体活动的影响。来自10个电极和肌电学(EEG)的脑电图(EEG)来自双侧胫骨前肌的肌电学(EMG)从22名健康的年轻,24名健康较旧和20名成人中获得了PD。在步态循环的双支撑阶段,对来自双侧感觉电机皮质和EMG的EEG评估了与事件相关的功率,皮质瘤相干性(CMC)和试用间相干性。与年轻人相比,低β频率(13-21次Hz)的CMC和EMG功率在低β频率(13-21次)(13-21赫兹)下显着下降,但较旧的旧和PD组之间没有区别。较旧的和PD参与者在秋季阶段花费较短的时间而不是年轻人。这些发现表明了步态的时间协调的年龄相关变化。低βCMC的减少表明在双支撑阶段期间老年人的脊髓电机神经元减少了皮质输入。与地图行走相比,我们还观察到跑步机期间低伽马频率的电生理措施的多种变化,表明心脏脊髓运动控制的任务依赖性差异。这些发现可能受人工制品的影响,并应谨慎解释。

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