Upper and lower extremity robotic devices for rehabilitation and for studying motor control

被引:251
作者
Hesse, S [1 ]
Schmidt, H [1 ]
Werner, C [1 ]
Bardeleben, A [1 ]
机构
[1] Free Univ Berlin, Klin Berlin, Dept Neurol Rehabil, D-14089 Berlin, Germany
关键词
lower extremity; motor rehabilitation; stroke; upper extremity;
D O I
10.1097/00019052-200312000-00010
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Purpose of review The successful motor rehabilitation of stroke, traumatic brain-injured and spinal cord-injured patients requires an intensive and task-specific therapy approach. Budget constraints limit a hand-to-hand therapy approach, so that intelligent machines may offer a solution to promote motor recovery and obtain a better understanding of motor control. This new field of automated or robot-assisted motor rehabilitation has emerged since the 1990s. Recent findings This article will present clinically viable devices for upper and lower extremity rehabilitation. The MIT-Manus and the Mirror-Image Motion Enabler robot, which enable unrestricted unilateral or bilateral shoulder and elbow movement, consistently proved superior on the motor impairment level. The ARM guide, which assisted reaching in a straight-line trajectory, and the Bi-Manu-Track, which enabled the bilateral practice of a forearm and wrist movement, are currently being tested. For gait rehabilitation after stroke, the electromechanical gait trainer, GT 1, has proved effective compared with treadmill training with body weight support. The Lokomat, consisting of a treadmill and a powered exoskeleton, lessened the therapeutic effort compared with manually assisted treadmill training in spinal cord-injured patients. Future developments will see more degrees of freedom, improved man-machine interaction and the implementation of virtual reality. Summary Technical possibilities are one aspect, but multi-centre trials and a consideration of the unsubstantiated fears among therapists of being replaced by machines will decide on the successful implementation of this most promising field to the benefit of patients.
引用
收藏
页码:705 / 710
页数:6
相关论文
共 26 条
  • [1] The effect of robot-assisted therapy and rehabilitative training on motor recovery following stroke
    Aisen, ML
    Krebs, HI
    Hogan, N
    McDowell, F
    Volpe, BT
    [J]. ARCHIVES OF NEUROLOGY, 1997, 54 (04) : 443 - 446
  • [2] Arz G, 2003, P 8 INT C REH ROB IC, P215
  • [3] Burgar CG, 2000, J REHABIL RES DEV, V37, P663
  • [4] Colombo G, 2000, J REHABIL RES DEV, V37, P693
  • [5] Driven gait orthosis for improvement of locomotor training in paraplegic patients
    Colombo, G
    Wirz, M
    Dietz, V
    [J]. SPINAL CORD, 2001, 39 (05) : 252 - 255
  • [6] Coote S., 2003, PROC INT C REHABIL R, P59
  • [7] An overview of treadmill locomotor training with partial body weight support: A neurophysiologically sound approach whose time has come for randomized clinical trials
    Dobkin, BH
    [J]. NEUROREHABILITATION AND NEURAL REPAIR, 1999, 13 (03) : 157 - 165
  • [8] Fanin C., 2003, ICORR'03, P23
  • [9] Effects of robotic therapy on motor impairment and recovery in chronic stroke
    Fasoli, SE
    Krebs, HI
    Stein, J
    Frontera, WR
    Hogan, N
    [J]. ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2003, 84 (04): : 477 - 482
  • [10] Robot-assisted arm trainer for the passive and active practice of bilateral forearm and wrist movements in hemiparetic subjects
    Hesse, S
    Schulte-Tigges, G
    Konrad, M
    Bardeleben, A
    Werner, C
    [J]. ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2003, 84 (06): : 915 - 920