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脑卒中后偏瘫患者运动想象神经反馈结合运动训练后感觉运动连通性的变化

Sensorimotor Connectivity after Motor Exercise with Neurofeedback in Post-Stroke Patients with Hemiplegia.

机构信息

School of Fundamental Science and Technology, Graduate School of Keio University, Kanagawa, 223-8522, Japan; Japan Society for the Promotion of Science, Tokyo, 102-0083, Japan.

Department of Rehabilitation Medicine, Keio University School of Medicine, Tokyo, 160-8582, Japan; Shonan Keiiku Hospital, Kanagawa, 252-0816, Japan.

出版信息

Neuroscience. 2019 Sep 15;416:109-125. doi: 10.1016/j.neuroscience.2019.07.037. Epub 2019 Jul 26.

Abstract

Impaired finger motor function in post-stroke hemiplegia is a debilitating condition with no evidence-based or accessible treatments. Here, we evaluated the neurophysiological effectiveness of direct brain control of robotic exoskeleton that provides movement support contingent with brain activity. To elucidate the mechanisms underlying the neurofeedback intervention, we assessed resting-state functional connectivity with functional magnetic resonance imaging (rsfcMRI) between the ipsilesional sensory and motor cortices before and after a single 1-h intervention. Eighteen stroke patients were randomly assigned to crossover interventions in a double-blind and sham-controlled design. One patient dropped out midway through the study, and 17 patients were included in this analysis. Interventions involved motor imagery, robotic assistance, and neuromuscular electrical stimulation administered to a paretic finger. The neurofeedback intervention delivered stimulations contingent on desynchronized ipsilesional electroencephalographic (EEG) oscillations during imagined movement, and the control intervention delivered sensorimotor stimulations that were independent of EEG oscillations. There was a significant time × intervention interaction in rsfcMRI in the ipsilesional sensorimotor cortex. Post-hoc analysis showed a larger gain in increased functional connectivity during the neurofeedback intervention. Although the neurofeedback intervention delivered fewer total sensorimotor stimulations compared to the sham-control, rsfcMRI in the ipsilesional sensorimotor cortices was increased during the neurofeedback intervention compared to the sham-control. Higher coactivation of the sensory and motor cortices during neurofeedback intervention enhanced rsfcMRI in the ipsilesional sensorimotor cortices. This study showed neurophysiological evidence that EEG-contingent neurofeedback is a promising strategy to induce intrinsic ipsilesional sensorimotor reorganization, supporting the importance of integrating closed-loop sensorimotor processing at a neurophysiological level.

摘要

中风后偏瘫患者手指运动功能受损,是一种使人衰弱的病症,目前尚无基于证据或可及的治疗方法。在这里,我们评估了直接大脑控制机器人外骨骼的神经生理效果,该外骨骼可根据大脑活动提供运动支持。为了阐明神经反馈干预的机制,我们使用功能磁共振成像(rsfcMRI)评估了干预前后对侧感觉和运动皮质之间的静息状态功能连接。18 名中风患者以双盲和假对照设计进行交叉干预。一名患者在研究中途退出,因此共有 17 名患者纳入本分析。干预措施包括运动想象、机器人辅助和神经肌肉电刺激,用于麻痹的手指。神经反馈干预根据想象运动时对侧脑电图(EEG)振荡的去同步化提供刺激,而对照干预则提供独立于 EEG 振荡的感觉运动刺激。对侧感觉运动皮质的 rsfcMRI 显示出显著的时间×干预交互作用。事后分析显示,在神经反馈干预期间,功能连接的增加幅度更大。尽管与假对照相比,神经反馈干预提供的总感觉运动刺激较少,但与假对照相比,神经反馈干预期间对侧感觉运动皮质的 rsfcMRI 增加。神经反馈干预期间感觉和运动皮质的更高协同激活增强了对侧感觉运动皮质的 rsfcMRI。这项研究提供了神经生理证据,表明 EEG 随机关联的神经反馈是一种很有前途的策略,可以诱导内在的对侧感觉运动重组,支持在神经生理水平上整合闭环感觉运动处理的重要性。

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