利用外骨骼辅助模式对脑卒中患者运动后β反弹进行纵向监测。

IF 6.4
International journal of neural systems Pub Date : 2025-09-01 Epub Date: 2025-06-01 DOI:10.1142/S0129065725500443
Juan A Barios, Yolanda Vales, Jose M Catalán, Andrea Blanco-Ivorra, David Martínez-Pascual, Nicolás García-Aracil
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引用次数: 0

摘要

任务导向康复对于脑卒中患者的手功能恢复至关重要,最近bci控制的外骨骼和神经生物标志物(如运动后β反弹(PMBR))的进展为优化这些治疗提供了新的途径。来自感觉运动皮层的运动相关脑电图信号,特别是PMBR(运动后)和事件相关去同步(ERD,运动期间),表现出高度的任务特异性,并与中风严重程度相关。本研究评估了两组34名慢性中风患者在自愿和外骨骼辅助运动任务期间的PMBR,以及16名健康参与者的对照组。第二个队列的纵向跟踪分析了PMBR的变化,在30个疗程的康复计划中,在三个时间点获得了脑电图记录。研究结果显示,在被动和主动运动任务中,PMBR都有显著的改变:严重损伤的患者在同侧半球缺乏PMBR偶极子,而中度损伤的患者则表现出减少的反应。脑卒中患者和对照组之间PMBR模式的显著差异突出了脑卒中引起的感觉运动皮层破坏的程度。ERD显示出最小的任务特异性差异,强调PMBR是运动功能障碍更可靠的生物标志物。这些发现支持使用PMBR,特别是PMBR/ERD比率,作为外骨骼辅助康复期间脑电图引导监测运动恢复的生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Post-Movement Beta Rebound for Longitudinal Monitoring of Motor Rehabilitation in Stroke Patients Using an Exoskeleton-Assisted Paradigm.

Task-oriented rehabilitation is essential for hand function recovery in stroke patients, and recent advancements in BCI-controlled exoskeletons and neural biomarkers - such as post-movement beta rebound (PMBR) - offer new pathways to optimize these therapies. Movement-related EEG signals from the sensorimotor cortex, particularly PMBR (post-movement) and event-related desynchronization (ERD, during movement), exhibit high task specificity and correlate with stroke severity. This study evaluated PMBR in 34 chronic stroke patients across two cohorts, along with a control group of 16 healthy participants, during voluntary and exoskeleton-assisted movement tasks. Longitudinal tracking in the second cohort enabled the analysis of PMBR changes, with EEG recordings acquired at three timepoints over a 30-session rehabilitation program. Findings revealed significant PMBR alterations in both passive and active movement tasks: patients with severe impairment lacked a PMBR dipole in the ipsilesional hemisphere, while moderately impaired patients showed a diminished response. The marked differences in PMBR patterns between stroke patients and controls highlight the extent of sensorimotor cortex disruption due to stroke. ERD showed minimal task-specific variation, underscoring PMBR as a more reliable biomarker of motor function impairment. These findings support the use of PMBR, particularly the PMBR/ERD ratio, as a biomarker for EEG-guided monitoring of motor recovery over time during exoskeleton-assisted rehabilitation.

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