Brain Network Organization Following Post-Stroke Neurorehabilitation

神经康复 物理医学与康复 冲程(发动机) 康复 步态训练 医学 步态 物理疗法 机械工程 工程类
作者
Antonino Naro,Loris Pignolo,Rocco Salvatore Calabrò
出处
期刊:International Journal of Neural Systems [World Scientific]
卷期号:32 (04): 2250009-2250009 被引量:9
标识
DOI:10.1142/s0129065722500095
摘要

Brain network analysis can offer useful information to guide the rehabilitation of post-stroke patients. We applied functional network connection models based on multiplex-multilayer network analysis (MMN) to explore functional network connectivity changes induced by robot-aided gait training (RAGT) using the Ekso, a wearable exoskeleton, and compared it to conventional overground gait training (COGT) in chronic stroke patients. We extracted the coreness of individual nodes at multiple locations in the brain from EEG recordings obtained before and after gait training in a resting state. We found that patients provided with RAGT achieved a greater motor function recovery than those receiving COGT. This difference in clinical outcome was paralleled by greater changes in connectivity patterns among different brain areas central to motor programming and execution, as well as a recruitment of other areas beyond the sensorimotor cortices and at multiple frequency ranges, contemporarily. The magnitude of these changes correlated with motor function recovery chances. Our data suggest that the use of RAGT as an add-on treatment to COGT may provide post-stroke patients with a greater modification of the functional brain network impairment following a stroke. This might have potential clinical implications if confirmed in large clinical trials.
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