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Powered Lower-Limb Exoskeletons to Restore Gait for Individuals with Paraplegia – a Review

机译:动力性下肢外骨骼恢复截瘫患者的步态-综述

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摘要

Individuals with paraplegia due to spinal cord injury rank restoration of walking high on the list of priorities to improving their quality of life. Powered lower-limb exoskeleton technology provides the ability to restore standing up, sitting down, and walking movements for individuals with paraplegia. The robotic exoskeletons generally have electrical motors located at the hip and knee joint centers, which move the wearers' lower limbs through the appropriate range of motion for gait according to control systems using either trajectory control or impedance control. Users of exoskeletons are able to walk at average gait speeds of 0.26 m/s and distances ranging between 121-171 m. However, the achieved gait speeds and distances fall short of those required for full community ambulation (0.8 m/s and at least 230 m), restricting use of the devices to limited community use with stand-by assist or supervised rehabilitation settings. Improvement in the gait speed and distance may be achievable by combining a specially designed powered exoskeleton with neuromuscular stimulation technologies resulting in a hybrid system that fully engages the user and achieves the necessary requirements to ambulate in the community environment with benefits of muscle contraction.
机译:因脊髓损伤而导致截瘫的人将恢复步行以提高生活质量列为优先事项。动力强劲的下肢外骨骼技术为截瘫患者提供了恢复站立,坐下和行走的能力。机器人外骨骼通常在髋关节和膝关节中心处具有电动机,该电动机根据使用轨迹控制或阻抗控制的控制系统使穿戴者的下肢运动通过适当的步态运动范围。外骨骼使用者能够以0.26 m / s的平均步态速度行走,距离范围为121-171 m。但是,所获得的步态速度和距离低于社区步行所需的步态速度和距离(0.8 m / s,至少为230 m),将设备的使用限制为在待机辅助或有监督的康复场所进行有限的社区使用。通过将专门设计的动力外骨骼与神经肌肉刺激技术相结合,可以实现步态速度和距离的改善,从而形成一种混合系统,该系统可以使用户充分参与并达到必要的要求,以在社区环境中进行活动,并具有肌肉收缩的优势。

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