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脑机接口中风后康复中的电活动、血流动力学和运动活动:临床案例研究。

Electrical, Hemodynamic, and Motor Activity in BCI Post-stroke Rehabilitation: Clinical Case Study.

作者信息

Frolov Alexander A, Bobrov Pavel D, Biryukova Elena V, Silchenko Anna V, Kondur Anna A, Dzhalagoniya Indiko Z, Massion Jean

机构信息

Research Institute of Translational Medicine, Pirogov Russian National Research Medical University, Moscow, Russia.

Laboratory of Mathematical Neurobiology of Learning of Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Science, Moscow, Russia.

出版信息

Front Neurol. 2018 Dec 20;9:1135. doi: 10.3389/fneur.2018.01135. eCollection 2018.

Abstract

The goal of the paper is to present an example of integrated analysis of electrical, hemodynamic, and motor activity accompanying the motor function recovery in a post-stroke patient having an extensive cortical lesion. The patient underwent a course of neurorehabilitation assisted with the hand exoskeleton controlled by brain-computer interface based on kinesthetic motor imagery. The BCI classifier was based on discriminating covariance matrices of EEG corresponding to motor imagery. The clinical data from three successive 2 weeks hospitalizations with 4 and 8 month intervals, respectively were under analysis. The rehabilitation outcome was measured by Fugl-Meyer scale and biomechanical analysis. Both measures indicate prominent improvement of the motor function of the paretic arm after each hospitalization. The analysis of brain activity resulted in three main findings. First, the sources of EEG activity in the intact brain areas, most specific to motor imagery, were similar to the patterns we observed earlier in both healthy subjects and post-stroke patients with mild subcortical lesions. Second, two sources of task-specific activity were localized in primary somatosensory areas near the lesion edge. The sources exhibit independent mu-rhythm activity with the peak frequency significantly lower than that of mu-rhythm in healthy subjects. The peculiarities of the detected source activity underlie changes in EEG covariance matrices during motor imagery, thus serving as the BCI biomarkers. Third, the fMRI data processing showed significant reduction in size of areas activated during the paretic hand movement imagery and increase for those activated during the intact hand movement imagery, shifting the activations to the same level. This might be regarded as the general index of the motor recovery. We conclude that the integrated analysis of EEG, fMRI, and motor activity allows to account for the reorganization of different levels of the motor system and to provide a comprehensive basis for adequate assessment of the BCI+ exoskeleton rehabilitation efficiency.

摘要

本文的目的是呈现一个对伴有广泛皮质损伤的中风后患者运动功能恢复过程中电活动、血流动力学和运动活动进行综合分析的实例。该患者接受了一个疗程的神经康复治疗,辅助设备是基于动觉运动想象的脑机接口控制的手部外骨骼。脑机接口分类器基于区分与运动想象相对应的脑电图协方差矩阵。对分别间隔4个月和8个月的连续3次为期2周的住院临床数据进行了分析。康复结果通过Fugl-Meyer量表和生物力学分析来衡量。这两种测量方法均表明每次住院后患侧手臂的运动功能有显著改善。对大脑活动的分析得出了三个主要发现。第一,完整脑区中最特定于运动想象的脑电图活动源,与我们之前在健康受试者和轻度皮质下损伤的中风后患者中观察到的模式相似。第二,两个特定任务活动源位于病变边缘附近的初级体感区。这些源表现出独立的μ节律活动,其峰值频率显著低于健康受试者的μ节律。检测到的源活动的特殊性是运动想象期间脑电图协方差矩阵变化的基础,因此可作为脑机接口生物标志物。第三,功能磁共振成像数据处理显示,患侧手运动想象期间激活区域的大小显著减小,而健侧手运动想象期间激活区域的大小增加,使激活水平趋于相同。这可能被视为运动恢复的总体指标。我们得出结论,脑电图、功能磁共振成像和运动活动的综合分析能够解释运动系统不同层次的重组,并为充分评估脑机接口+外骨骼康复效率提供全面的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0fc/6306452/c59455c72706/fneur-09-01135-g0001.jpg

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