Hussain Shahid, Jamwal Prashant K, Vliet Paulette V, Brown Nicholas A T
Human-Centred Technology Research Center, Faculty of Science and Technology, University of Canberra , Canberra, ACT, Australia.
Department of Electrical and Computer Engineering, Nazarbayev University , Astana, Kazakhstan.
Expert Rev Neurother. 2021 Jan;21(1):111-121. doi: 10.1080/14737175.2021.1847646. Epub 2020 Nov 16.
: Robot-assisted neuro-rehabilitation is gaining acceptability among the physical therapy community. The ankle is one of the most complicated anatomical joints in the human body and neurologic injuries such as stroke often result in ankle and foot disabilities. : Robotic solutions for the ankle joint physical therapy have extensively been researched. Significant research has been conducted on the mechanism design, actuation as well as control of these ankle rehabilitation robots. Also, the experimental evaluations of these robots have been conducted with healthy and neurologically impaired subjects. This paper presents a comprehensive review of the recent developments in the field of robot-assisted ankle rehabilitation. Mechanism design, actuation, and various types of control strategies are discussed. Also, the experimental evaluations of these ankle rehabilitation robots are discussed in the context of the evaluation of robotic hardware with healthy subjects as well as motor function outcomes with neurologically impaired subjects. : Significant progress in the mechanism design, control, and experimental evaluations of the ankle rehabilitation robots have been reported. However, more sensing and reference trajectory generation methods need to be developed as well as more objective quantitive evaluations that need to be conducted for establishing the clinical significance of these robots.
机器人辅助神经康复在物理治疗界正逐渐被接受。脚踝是人体中最复杂的解剖关节之一,中风等神经损伤常常导致脚踝和足部残疾。针对踝关节物理治疗的机器人解决方案已得到广泛研究。在这些脚踝康复机器人的机构设计、驱动以及控制方面已开展了大量研究。此外,还对健康受试者和神经功能受损受试者进行了这些机器人的实验评估。本文对机器人辅助脚踝康复领域的最新进展进行了全面综述。讨论了机构设计、驱动以及各种控制策略。同时,在对健康受试者的机器人硬件评估以及对神经功能受损受试者的运动功能结果评估的背景下,讨论了这些脚踝康复机器人的实验评估。已报道在脚踝康复机器人的机构设计、控制和实验评估方面取得了重大进展。然而,还需要开发更多的传感和参考轨迹生成方法,以及进行更客观的定量评估,以确立这些机器人的临床意义。