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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >MIT-Skywalker: A Novel Gait Neurorehabilitation Robot for Stroke and Cerebral Palsy
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MIT-Skywalker: A Novel Gait Neurorehabilitation Robot for Stroke and Cerebral Palsy

机译:MIT-Skywalker:一种用于中风和脑瘫的新型步态神经康复机器人

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摘要

The MIT-Skywalker is a novel robotic device developed for the rehabilitation or habilitation of gait and balance after a neurological injury. It represents an embodiment of the concept exhibited by passive walkers for rehabilitation training. Its novelty extends beyond the passive walker quintessence to the unparalleled versatility among lower extremity devices. For example, it affords the potential to implement a novel training approach built upon our working model of movement primitives based on submovements, oscillations, and mechanical impedances. This translates into three distinct training modes: discrete, rhythmic, and balance. The system offers freedom of motion that forces self-directed movement for each of the three modes. This paper will present the technical details of the robotic system as well as a feasibility study done with one adult with stroke and two adults with cerebral palsy. Results of the one-month feasibility study demonstrated that the device is safe and suggested the potential advantages of the three modular training modes that can be added or subtracted to tailor therapy to a particular patient's need. Each participant demonstrated improvement in common clinical and kinematic measurements that must be confirmed in larger randomized control clinical trials.
机译:MIT-Skywalker是一种新型的机器人设备,用于神经损伤后步态的恢复或平衡。它代表了被动步行者为康复训练所展示的概念的一个实施例。它的新颖性超越了被动助行器的精髓,延伸至下肢设备无与伦比的多功能性。例如,它有可能实施一种新的训练方法,该方法建立在基于子运动,振荡和机械阻抗的运动原语工作模型的基础上。这转化为三种不同的训练模式:离散,有节奏和平衡。该系统提供了运动自由度,可为三种模式中的每一种强制进行自定向运动。本文将介绍该机器人系统的技术细节,以及对一名患有中风的成年人和两名患有脑瘫的成年人进行的可行性研究。一项为期一个月的可行性研究结果表明,该设备是安全的,并提出了三种模块化培训模式的潜在优势,可以根据特定患者的需要对这种培训模式进行增减。每个参与者都表现出在常见的临床和运动学测量方面的改善,这必须在较大的随机对照临床试验中得到证实。

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