Faculty of Physical Education and Physiotherapy, Advanced Rehabilitation, Technology and Science (ARTS), Vrije Universiteit Brussel, Belgiium.
J Rehabil Med. 2012 Apr;44(4):299-309. doi: 10.2340/16501977-0958.
To provide an overview of robot-assisted rehabilitation devices developed for actuation of the ankle-foot complex and their ability to influence the attributes of normal gait in patients with spinal cord injury.
A search was conducted in MEDLINE, Web of Knowledge, National Academic Research and Collaborations Information System, and Physiotherapy Evidence Data-base (1985-2011), using, "ankle", "foot", "robotics", "orthotics" and "spinal cord injury" as most relevant keywords. Article inclusion was performed in 3 stages; at the level of: (i) title, (ii) abstract and (iii) full text.
The actuated ankle-foot orthoses currently available are characterized by several combinations of an actuator and a control mechanism. Both the actuator and the control strategy substantially influence human-machine interaction and therefore the potential of the device to assist in modifying locomotor function and potentially modify the underlying motor control mechanisms.
Due to small sample sizes, limited studies in patients with spinal cord injury, and limitations in study design, it is difficult to draw firm conclusions on the effect of different types of actuated ankle-foot orthoses. Based on the limited data available, pneumatic artificial muscles in combination with proportional myoelectric control are suggested to have the potential to meet most of the preconditions to restore the attributes of normal gait and therefore facilitate neuroplasticity.
介绍为踝关节-足复合运动而开发的机器人辅助康复设备及其对脊髓损伤患者正常步态特征的影响。
在 MEDLINE、Web of Knowledge、国家学术研究与合作信息系统和物理治疗证据数据库(1985-2011 年)中,使用“踝关节”、“足部”、“机器人技术”、“矫形器”和“脊髓损伤”等作为最相关的关键字进行搜索。文章纳入分为 3 个阶段;(i)标题,(ii)摘要和(iii)全文。
目前可用的驱动式踝足矫形器具有几种执行器和控制机制的组合。执行器和控制策略都对人机交互产生重大影响,从而影响设备辅助改变运动功能和潜在改变运动控制机制的能力。
由于样本量小、脊髓损伤患者的研究有限以及研究设计的局限性,很难对不同类型的驱动式踝足矫形器的效果得出确切的结论。根据现有有限的数据,气动人工肌肉与比例肌电控制相结合,具有恢复正常步态特征和促进神经可塑性的潜力。