Design Process of Exoskeleton Rehabilitation Device and Implementation of Bilateral Upper Limb Motor Movement

被引:41
|
作者
Song, Zhibin [2 ]
Guo, Shuxiang [1 ,3 ]
机构
[1] Kagawa Univ, Dept Intelligent Mech Syst Engn, Takamatsu, Kagawa 7610396, Japan
[2] Kagawa Univ, Grad Sch, Takamatsu, Kagawa 7610396, Japan
[3] Harbin Engn Univ, Automat Coll, Harbin 150001, Peoples R China
关键词
Phantom premium; MTx sensor; Exoskeleton device; Bilateral training; STROKE PATIENTS; ARMIN II; ROBOT; THERAPY; COORDINATION; PERFORMANCE; CORTEX; JOINT;
D O I
10.5405/jmbe.987
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
With the development of neurorehabilitation, physical rehabilitation strategies for the upper limbs have become gradually accepted by therapists and researchers. These strategies include intensive intervention, task-oriented training, and bilateral training. Most upper limb rehabilitation systems have been developed for unilateral training. This paper develops an upper limb exoskeleton rehabilitation device (ULERD) that can be used for bilateral training. The device has three active degrees of freedom (DoFs) in the elbow and wrist joints, and an additional four passive DoFs at these joints to correct any misalignment between the human and device joints. A bilateral training strategy is implemented with the developed ULERD and a haptic device according to neurorehabilitation theory. In a preliminary study, a healthy user was able to manipulate the haptic device with one hand (intact hand for hemiplegic patients) when the upper arm was fixed, and the ULERD assisted in moving the other hand (impaired upper limb for hemiplegic patients). To implement bilateral training, the kinematics of one upper limb (intact limb) and the haptic device is analyzed, respectively. The angles of the three active DoFs are determined via integration. An inertia sensor is used to evaluate the kinematics resolution. The ULERD was evaluated by experienced therapists during the design process to determine its potential for clinic application. Experimental results indicate that the kinematics resolution is effective and that this type of bilateral movement can be implemented using the ULERD and the haptic device.
引用
收藏
页码:323 / 329
页数:7
相关论文
共 50 条
  • [1] Study on the sEMG Driven Upper Limb Exoskeleton Rehabilitation Device in Bilateral Rehabilitation
    Pang, Muye
    Guo, Shuxiang
    Song, Zhibin
    JOURNAL OF ROBOTICS AND MECHATRONICS, 2012, 24 (04) : 585 - 594
  • [2] Bioinspired Mechanical Design of an Upper Limb Exoskeleton for Rehabilitation and Motor Control Assessment
    Miranda, Andrey Bugarin W.
    Yasutomi, Andre Yuji
    Souit, Camila
    Forner-Cordero, Arturo
    2012 4TH IEEE RAS & EMBS INTERNATIONAL CONFERENCE ON BIOMEDICAL ROBOTICS AND BIOMECHATRONICS (BIOROB), 2012, : 1776 - 1781
  • [3] Design and Control of an Upper Limb Bionic Exoskeleton Rehabilitation Device Based on Tensegrity Structure
    Ni, Peng
    Sun, Jianwei
    Dong, Jialin
    APPLIED BIONICS AND BIOMECHANICS, 2024, 2024
  • [4] Design and Development of Upper Limb Soft Exoskeleton for Rehabilitation
    Gobee, Suresh
    Durairajah, Vickneswari
    Mugilan, G.
    2ND INTERNATIONAL CONFERENCE FOR INNOVATION IN BIOMEDICAL ENGINEERING AND LIFE SCIENCES, 2018, 67 : 111 - 116
  • [5] Design and Modelling of a Human Upper Limb for Rehabilitation Exoskeleton
    Rangan R.P.
    Johnson J.
    Babu S.R.
    Maheswari C.
    Vaisali S.
    Shankar S.
    Journal of Engineering Science and Technology Review, 2024, 17 (02) : 9 - 15
  • [6] Implementation of Resistance Training Using an Upper-Limb Exoskeleton Rehabilitation Device for Elbow Joint
    Song, Zhibin
    Guo, Shuxiang
    Pang, Muye
    Zhang, Songyuan
    Xiao, Nan
    Gao, Baofeng
    Shi, Liwei
    JOURNAL OF MEDICAL AND BIOLOGICAL ENGINEERING, 2014, 34 (02) : 188 - 196
  • [7] Mechanical Design of a Robotic Exoskeleton for Upper Limb Rehabilitation
    Garcia Montano, Jorge
    Garcia Cena, Cecilia E.
    Monge Chamorro, Luis J.
    Andre Destarac, Marie
    Saltaren Pazmino, Roque
    ADVANCES IN AUTOMATION AND ROBOTICS RESEARCH IN LATIN AMERICA, 2017, 13 : 297 - 308
  • [8] Training device for upper limb motor rehabilitation
    Garcia, Alice T.
    Kelbouscas, Andra L. da S.
    Guimaraes, Leonardo L.
    Silva, Sibyla A. V. E.
    Oliveira, Vinicius M.
    2020 IEEE 18TH INTERNATIONAL CONFERENCE ON INDUSTRIAL INFORMATICS (INDIN), VOL 1, 2020, : 237 - 242
  • [9] Design and Interaction Control of a New Bilateral Upper-Limb Rehabilitation Device
    Miao, Qing
    Zhang, Mingming
    Wang, Yupu
    Xie, Sheng Q.
    JOURNAL OF HEALTHCARE ENGINEERING, 2017, 2017
  • [10] Design Methodology for Rehabilitation Robots: Application in an Exoskeleton for Upper Limb Rehabilitation
    Cruz Martinez, Giorgio Mackenzie
    Aviles, L. A. Z.
    APPLIED SCIENCES-BASEL, 2020, 10 (16):