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A wearable exoskeleton suit for motion assistance to paralysed patients

机译:可穿戴的外骨骼套装,为瘫痪患者提供运动辅助

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Summary Background/Objective The number of patients paralysed due to stroke, spinal cord injury, or other related diseases is increasing. In order to improve the physical and mental health of these patients, robotic devices that can help them to regain the mobility to stand and walk are highly desirable. The aim of this study is to develop a wearable exoskeleton suit to help paralysed patients regain the ability to stand up/sit down (STS) and walk. Methods A lower extremity exoskeleton named CUHK-EXO was developed with considerations of ergonomics, user-friendly interface, safety, and comfort. The mechanical structure, human-machine interface, reference trajectories of the exoskeleton hip and knee joints, and control architecture of CUHK-EXO were designed. Clinical trials with a paralysed patient were performed to validate the effectiveness of the whole system design. Results With the assistance provided by CUHK-EXO, the paralysed patient was able to STS and walk. As designed, the actual joint angles of the exoskeleton well followed the designed reference trajectories, and assistive torques generated from the exoskeleton actuators were able to support the patient’s STS and walking motions. Conclusion The whole system design of CUHK-EXO is effective and can be optimised for clinical application. The exoskeleton can provide proper assistance in enabling paralysed patients to STS and walk.
机译:背景技术/目的由于中风,脊髓损伤或其他相关疾病而瘫痪的患者数量正在增加。为了改善这些患者的身心健康,非常需要能够帮助他们恢复站立和行走的灵活性的机器人设备。这项研究的目的是开发一种可穿戴的外骨骼套装,以帮助瘫痪的患者恢复站立/坐下(STS)和行走的能力。方法考虑人体工程学,人性化界面,安全性和舒适性,开发了一种名为CUHK-EXO的下肢外骨骼。设计了CUHK-EXO的机械结构,人机界面,外骨骼髋,膝关节的参考轨迹以及控制架构。对瘫痪的患者进行了临床试验,以验证整个系统设计的有效性。结果在香港中文大学外展中心的协助下,瘫痪的病人能够进行STS行走。按照设计,外骨骼的实际关节角度遵循设计的参考轨迹,并且由外骨骼执行器产生的辅助扭矩能够支持患者的STS和步行运动。结论CUHK-EXO的整个系统设计是有效的,可以针对临床应用进行优化。外骨骼可以为瘫痪的患者提供STS和行走的适当帮助。

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