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沉浸式基于虚拟现实和肌电反馈的脑卒中康复训练系统

An Immersive Motor Imagery Training System for Post-Stroke Rehabilitation Combining VR and EMG-based Real-Time Feedback.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:7590-7593. doi: 10.1109/EMBC46164.2021.9629767.

Abstract

Motor imagery combining virtual reality (VR) technique has recently been reported to have an increasingly positive impact on post-stroke rehabilitation. However, there is a common problem that the engagement of patients cannot be confirmed during motor imagery training due to a lack of effective feedback control. This paper proposes a VR-based motor imagery training system for post-stroke rehabilitation, using surface electromyographic (EMG)-based real-time feedback to enable the personalized training and quantitative assessment of participation degree. Three different experiments including assessment experiment, action observation (AO), combined motor imagery and action observation (MI+AO) experiment were performed on 4 post-stroke patients to verify the system. The immersive scenario of the VR system provides a shooting basketball training for bilateral upper limbs. The EMG data of assessment of each participant was collected to calculate the thresholds, which was utilized in the subsequent experiments based on real-time feedback of EMG. The result reveals significant differences of the muscle strength between AO and MI+AO experiments. This demonstrates that the EMG-based feedback is effective to be of use in assessment of participation degree. The primary application shows that VR-assisted motor imagery system has potential to provide personalized and more engaged training for post-stroke rehabilitation.

摘要

基于虚拟现实(VR)技术的运动想象最近被报道对中风后康复有越来越积极的影响。然而,由于缺乏有效的反馈控制,运动想象训练中存在一个常见的问题,即无法确认患者的参与度。本文提出了一种基于 VR 的中风后康复运动想象训练系统,使用基于表面肌电(EMG)的实时反馈来实现个性化训练和参与度的定量评估。我们对 4 名中风患者进行了 3 种不同的实验,包括评估实验、动作观察(AO)实验和运动想象与动作观察结合(MI+AO)实验,以验证该系统。VR 系统的沉浸式场景为双侧上肢提供了投篮训练。评估每个参与者的 EMG 数据被收集以计算阈值,然后基于 EMG 的实时反馈在后续实验中使用这些阈值。结果显示 AO 和 MI+AO 实验之间的肌肉力量有显著差异。这表明基于肌电的反馈在评估参与度方面是有效的。初步应用表明,VR 辅助运动想象系统有潜力为中风后康复提供个性化和更具吸引力的训练。

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