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Enhancement of motor-imagery ability via combined action observation and motor-imagery training with proprioceptive neurofeedback

机译:通过组合动作观察和机动图像训练利用具有丙灭虫神经融合的动机图像增强

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Varied individual ability to control the sensory-motor rhythms may limit the potential use of motor-imagery (MI) in neurorehabilitation and neuroprosthetics. We employed neurofeedback training of MI under action observation (AO: AOMI) with proprioceptive feedback and examined whether it could enhance MI-induced event related desynchronization (ERD). Twenty-eight healthy young adults participated in the neurofeedback training. They performed MI while watching a video of hand-squeezing motion from a first-person perspective. Eleven participants received correct proprioceptive feedback of the same hand motion with the video, via an exoskeleton robot attached to their hand, upon their successful generation of ERD. Another nine participants received random feedback. The training lasted for approximately 20 min per day and continued for 6 days within an interval of 2 weeks. MI-ERD power was evaluated separately, without AO, on each experimental day. The MI-ERD power of the participants receiving correct feedback, as opposed to random feedback, was significantly increased after training. An additional experiment in which the remaining eight participants were trained with auditory instead of proprioceptive feedback failed to show statistically significant increase in MI-ERD power. The significant training effect obtained in shorter training time relative to previously proposed methods suggests the superiority of AOMI training and physiologically-congruent proprioceptive feedback to enhance the MI-ERD power. The proposed neurofeedback training could help patients with motor deficits to attain better use of brain machine interfaces for rehabilitation and/or prosthesis.
机译:各种控制感觉电动机节律的个人能力可能会限制在神经晕厥和神经原细胞中的电动成像(MI)的潜在使用。我们在行动观察(AO:AOMI)下使用了MI的神经融合训练,并考虑了是否可以增强MI诱导的事件相关的去同步(ERD)。二十八名健康年轻人参加了神经融合训练。他们在观看了从第一人称视角观看了手挤压运动的视频的同时执行了MI。通过在他们的成功产生ERD时,11名参与者通过屏幕机器人接收了与视频相同的手动动作的正确的预言人员反馈。另一个九个参与者接受了随机反馈。培训每天持续约20分钟,在2周内持续6天。在每个实验日,没有AO,单独评估MI-ERD电源。接受正确反馈的参与者的MI-ERD电力与随机反馈相反,培训后显着增加。另外一个实验,其中剩下的八个参与者训练,听觉,而不是预先看性能反馈,未能在统计上显着增加MI-ERD电源。相对于先前提出的方法相对于先前提出的方法更短的训练时间获得的显着培训效果表明AOMI培训和生理学上一致的预言反馈的优越性,以提高MI-ERD电力。拟议的神经融合培训可以帮助患者患者缺乏造成脑机界面的患者,以获得康复和/或假体。

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