首页> 外文期刊>Journal of Neural Transplantation and Plasticity: Neural Plasticity >Quantification of Upper Limb Motor Recovery and EEG Power Changes after Robot-Assisted Bilateral Arm Training in Chronic Stroke Patients: A Prospective Pilot Study
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Quantification of Upper Limb Motor Recovery and EEG Power Changes after Robot-Assisted Bilateral Arm Training in Chronic Stroke Patients: A Prospective Pilot Study

机译:机器人辅助双边手臂训练对慢性卒中患者的上肢运动恢复和脑电功率变化的量化:前瞻性研究

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Background. Bilateral arm training (BAT) has shown promise in expediting progress toward upper limb recovery in chronic stroke patients, but its neural correlates are poorly understood. Objective. To evaluate changes in upper limb function and EEG power after a robot-assisted BAT in chronic stroke patients. Methods. In a within-subject design, seven right-handed chronic stroke patients with upper limb paresis received 21 sessions (3 days/week) of the robot-assisted BAT. The outcomes were changes in score on the upper limb section of the Fugl-Meyer assessment (FM), Motricity Index (MI), and Modified Ashworth Scale (MAS) evaluated at the baseline (T0), posttraining (T1), and 1-month follow-up (T2). Event-related desynchronization/synchronization were calculated in the upper alpha and the beta frequency ranges. Results. Significant improvement in all outcomes was measured over the course of the study. Changes in FM were significant at T2, and in MAS at T1 and T2. After training, desynchronization on the ipsilesional sensorimotor areas increased during passive and active movement, as compared with T0. Conclusions. A repetitive robotic-assisted BAT program may improve upper limb motor function and reduce spasticity in the chronically impaired paretic arm. Effects on spasticity were associated with EEG changes over the ipsilesional sensorimotor network.
机译:背景。双边手臂训练(BAT)在加速中风患者上肢康复方面已显示出希望,但对其神经相关性了解甚少。目的。在慢性卒中患者中,通过机器人辅助BAT评估上肢功能和EEG功能的变化。方法。在受试者内部设计中,七名右手慢性卒中患者上肢轻瘫,接受了21节(3周/天/周)的机器人辅助BAT。结果是在基线(T0),训练后(T1)和1-评估的Fugl-Meyer评估(FM),上肢指数(MI)和改良的Ashworth量表(MAS)的上肢部分得分变化。一个月的随访(T2)。与事件相关的不同步/同步是在较高的alpha和beta频率范围内计算的。结果。在整个研究过程中,所有结果均得到了显着改善。 FM的变化在T2时显着,而MAS在T1和T2时显着。训练后,与T0相比,被动和主动运动过程中同感觉运动区域的失步增加。结论。重复的机器人辅助BAT程序可以改善上肢运动功能,并减少慢性受损的平臂患者的痉挛。对痉挛的影响与同侧感觉运动网络上的脑电图变化有关。

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