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Technical validation of an integrated robotic hand rehabilitation device: Finger independent movement, EMG control, and EEG-based biofeedback

机译:综合机器人康复装置的技术验证:手指独立运动,EMG控制和基于EEG的生物反馈

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The objective of this work was to design and experiment a robotic hand rehabilitation device integrated with a wireless EEG system, going towards patient active participation maximization during the exercise. This has been done through i) hand movement actively triggered by patients muscular activity as revealed by electromyographic signals (i.e., a target hand movement for the rehabilitation session is defined, the patient is required to start the movement and only when the muscular activity overcomes a predefined threshold, the patient-initiated movement is supported); ii) an EEG-based biofeedback implemented to make the user aware of his/her level of engagement (i.e., brain rhythms power ratio Beta/Alpha). The designed system is composed by the Gloreha hand rehabilitation glove, a device for electromyographic signals recording, and a wireless EEG headset. A strong multidisciplinary approach was the base to reach this goal, which is the fruitful background of the Think and Go project. Within this project, research institutes (Politecnico di Milano), clinical centers (INRCA-IRCCS), and companies (ab medica s.p.a., Idrogent, SXT) have worked together throughout the development of the integrated robotic hand rehabilitation device. The integrated device has been tested on a small pilot group of healthy volunteers. All the users were able to calibrate and correctly use the system, and they reported that the system was more challenging to be used with respect to the standard passive hand mobilization session, and required more attention and involvement. The results obtained during the preliminary tests are encouraging, and demonstrate the feasibility of the proposed approach.
机译:这项工作的目标是设计和实验与无线EEG系统集成的机器人手工康复设备,在运动期间朝向患者积极参与最大化。这已经完成了通过i)患者肌肉活动的手动运动,如电焦信号透露的肌肉活动(即,定义了用于康复会会议的目标手动运动,患者需要开始运动,只有当肌肉活动克服时预定义的阈值,支持患者启动的移动); ii)实施的基于脑电图的生物反馈,以使用户意识到他/她的参与水平(即脑节奏功率比β/α)。设计的系统由Gloreha手工康复手套,用于电子视信号记录的装置和无线EEG耳机。强大的多学科方法是达到这一目标的基础,这是思想和去项目的富有成效的背景。在该项目中,研究机构(PoliteCnico Di Milano),临床中心(Inrca-Ircc)和公司(AB Medica S.P.A.,Idrogent,SXT)在整个综合机器人康复装置的开发过程中都在一起。集成设备已经在一名小型飞行员组的健康志愿者进行了测试。所有用户都能够校准并正确使用该系统,并且他们报告说,该系统更具挑战性,以尊重标准被动手动动员会议,并要求更多的关注和参与。在初步测试期间获得的结果令人鼓舞,并证明了所提出的方法的可行性。

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