首页> 外文期刊>Journal of Neuroscience Methods >A simple procedure to synchronize concurrent measurements of gait and brain electrical activity and preliminary results from a pilot measurement involving motor-cognitive dual-tasking in healthy older and young volunteers
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A simple procedure to synchronize concurrent measurements of gait and brain electrical activity and preliminary results from a pilot measurement involving motor-cognitive dual-tasking in healthy older and young volunteers

机译:一个简单的步骤,可以同步进行步态和大脑电活动的同时测量,以及健康和老年志愿者中涉及运动认知双重任务的试验性测量的初步结果

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Background: The ability to record brain activity under normal walking conditions is the key to studying supraspinal influence on spinal gait control.New method: We developed a procedure of synchronizing an electronic walkway (GAITRite, CIR Systems Inc.) with a multi-channel, wireless EEG-system (BrainAmp, Brainproducts).To assess the practicability of our procedure we performed a proof of concept measurement involving concurrently recording gait pattern and brain electrical activity in two elderly and two young participants. This measurement enabled us to assess the synchronization of the two data sets under realistic conditions. Results: Only carrying a filled water glass reduced gait regularity in the elderly. In the young gait regularity was constant across all tasks. This concurs with previous findings reporting a task specific influence on gait. Carrying a full water glass also led to an increase in the power of the EEG gamma-band oscillations in frontal cortex of the elderly, but led to a decrease in the young participants. Carrying a full glass increased activity in frontal cortex of the elderly but decreased it in the young participants. Comparison with existing methods: At present, concurrent recording of gait pattern and electrical brain activity requires participants to walk on a treadmill. Our procedure enables these measurements to be made under natural walking conditions. This allows measurements of brain activity during walking in special needs groups such as children, the elderly or the infirm under near natural conditions.
机译:背景:在正常的步行条件下记录大脑活动的能力是研究脊髓上对步态控制的影响的关键。新方法:我们开发了一种将电子人行道(GAITRite,CIR Systems Inc.)与多通道同步的程序,无线脑电图系统(BrainAmp,Brainproducts)。为评估我们程序的实用性,我们进行了概念验证测量,涉及同时记录两名老年和两名年轻参与者的步态模式和脑电活动。这种测量使我们能够评估现实条件下两个数据集的同步。结果:仅携带填充的水杯会降低老年人的步态规律。在年轻步态中,所有任务的规律性都是恒定的。这与以前的发现一致,后者报告了任务对步态的特定影响。携带盛满水的玻璃杯还导致老年人额叶皮层的脑电图伽玛谱带振荡能力增强,但导致年轻参与者的数量减少。携带完整的玻璃杯可以增加老年人额叶皮层的活动,而减少年轻参与者的活动。与现有方法的比较:目前,同时记录步态模式和脑电活动需要参与者在跑步机上行走。我们的程序使这些测量可以在自然的步行条件下进行。这样可以测量在特殊需求群体(例如儿童,老人或体弱者)在接近自然条件下行走时的大脑活动。

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