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Coupling Between Leg Muscle Activation and EEG During Normal Walking Intentional Stops and Freezing of Gait in Parkinsons Disease

机译:正常行走故意停止以及帕金森氏病步态冻结期间腿部肌肉激活与脑电图之间的耦合

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摘要

In this paper, we apply novel techniques for characterizing leg muscle activation patterns via electromyograms (EMGs) and for relating them to changes in electroencephalogram (EEG) activity during gait experiments. Specifically, we investigate changes of leg-muscle EMG amplitudes and EMG frequencies during walking, intentional stops, and unintended freezing-of-gait (FOG) episodes. FOG is a frequent paroxysmal gait disturbance occurring in many patients suffering from Parkinson's disease (PD). We find that EMG amplitudes and frequencies do not change significantly during FOG episodes with respect to walking, while drastic changes occur during intentional stops. Phase synchronization between EMG signals is most pronounced during walking in controls and reduced in PD patients. By analyzing cross-correlations between changes in EMG patterns and brain-wave amplitudes (from EEGs), we find an increase in EEG-EMG coupling at the beginning of stop and FOG episodes. Our results may help to better understand the enigmatic pathophysiology of FOG, to differentiate between FOG events and other gait disturbances, and ultimately to improve diagnostic procedures for patients suffering from PD.
机译:在本文中,我们应用新颖的技术来通过肌电图(EMG)表征腿部肌肉的激活模式,并将它们与步态实验中脑电图(EEG)活性的变化相关联。具体来说,我们调查步行,故意停止和意外的步态冻结(FOG)发作期间腿部肌肉EMG振幅和EMG频率的变化。 FOG是许多患有帕金森氏病(PD)的患者经常发生的阵发性步态障碍。我们发现,EMG振幅和频率在FOG发作期间相对于步行没有明显变化,而在有意停止期间发生了剧烈变化。 EMG信号之间的相位同步在对照组中行走时最为明显,而在PD患者中则有所降低。通过分析EMG模式变化和脑电波振幅(来自EEG)之间的互相关性,我们发现在停止和FOG发作开始时EEG-EMG耦合增加。我们的结果可能有助于更好地了解FOG的神秘病理生理,区分FOG事件和其他步态障碍,并最终改善PD患者的诊断程序。

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