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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >The application of precisely controlled functional electrical stimulation to the shoulder, elbow and wrist for upper limb stroke rehabilitation: a feasibility study
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The application of precisely controlled functional electrical stimulation to the shoulder, elbow and wrist for upper limb stroke rehabilitation: a feasibility study

机译:精确控制的功能性电刺激在肩,肘和腕关节上肢中风康复中的应用:可行性研究

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Background Functional electrical stimulation (FES) during repetitive practice of everyday tasks can facilitate recovery of upper limb function following stroke. Reduction in impairment is strongly associated with how closely FES assists performance, with advanced iterative learning control (ILC) technology providing precise upper-limb assistance. The aim of this study is to investigate the feasibility of extending ILC technology to control FES of three muscle groups in the upper limb to facilitate functional motor recovery post-stroke. Methods Five stroke participants with established hemiplegia undertook eighteen intervention sessions, each of one hour duration. During each session FES was applied to the anterior deltoid, triceps, and wrist/finger extensors to assist performance of functional tasks with real-objects, including closing a drawer and pressing a light switch. Advanced model-based ILC controllers used kinematic data from previous attempts at each task to update the FES applied to each muscle on the subsequent trial. This produced stimulation profiles that facilitated accurate completion of each task while encouraging voluntary effort by the participant. Kinematic data were collected using a Microsoft Kinect, and mechanical arm support was provided by a SaeboMAS. Participants completed Fugl-Meyer and Action Research Arm Test clinical assessments pre- and post-intervention, as well as FES-unassisted tasks during each intervention session. Results Fugl-Meyer and Action Research Arm Test scores both significantly improved from pre- to post-intervention by 4.4 points. Improvements were also found in FES-unassisted performance, and the amount of arm support required to successfully perform the tasks was reduced. Conclusions This feasibility study indicates that technology comprising low-cost hardware fused with advanced FES controllers accurately assists upper limb movement and may reduce upper limb impairments following stroke.
机译:背景技术在重复执行日常任务期间,功能性电刺激(FES)可以促进中风后上肢功能的恢复。先进的迭代学习控制(ILC)技术可提供精确的上肢辅助功能,因此,减少损伤与FES辅助性能的紧密程度密切相关。这项研究的目的是研究扩展ILC技术以控制上肢三个肌肉群的FES以促进中风后运动功能恢复的可行性。方法5名中风偏瘫的卒中参与者进行了18次干预,每次持续1小时。在每次训练期间,将FES应用于前三角肌,三头肌和腕部/手指伸肌,以协助执行具有实际物体的功能性任务,包括合上抽屉和按下电灯开关。基于高级模型的ILC控制器使用先前在每个任务中尝试的运动学数据来更新在后续试验中应用于每个肌肉的FES。这产生了刺激概况,其促进了每个任务的准确完成,同时鼓励了参与者的自愿努力。运动数据使用Microsoft Kinect收集,机械臂支持由SaeboMAS提供。参加者在干预前后均完成了Fugl-Meyer和Action Research Arm Test的临床评估,以及在FES的协助下完成的任务。结果从干预前到干预后,Fugl-Meyer和Action Research Arm Test分数均显着提高了4.4分。在FES辅助下的性能也得到了改善,成功完成任务所需的手臂支撑量也减少了。结论该可行性研究表明,由低成本硬件与先进的FES控制器融合而成的技术可以准确地协助上肢运动,并可以减少中风后上肢的损伤。

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