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Development of new rehabilitation robot device that can be attached to the conventional Knee-Ankle-Foot-Orthosis for controlling the knee in individuals after stroke

机译:开发新的康复机器人装置,可以附加到传统的膝关节脚斜肌,用于在中风后控制个体膝关节

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This research developed a device that can be attached to the conventional Knee-Ankle-Foot-Orthosis for controlling the knee in individuals after stroke. The device automatically assists the flexion and extension movements of the knee joint at the appropriate timing. We aimed to clarify the effect of this device on gait performance, kinematic pattern and muscle activation during gait. Seventeen participants after stroke were recruited in this study. They walked with this device for 3 minutes, and we measured the 10m gait time, number of steps, knee motion using electric goniometer and muscle activities of lower limbs during gait. The gait speed, number of steps, and range of knee joint improved by using the device with assist, and those changes remained without assist. For muscle activities measured by electromyography in the lower limbs, although the device only assists one side of the limb, it was able to alter EMG of both paretic and non-paretic limbs. By assisting only the paretic knee movements, the device was able to improve the performance, kinematic pattern and muscle activation during gait, which remained as an aftereffect.
机译:该研究开发了一种可连接到传统膝关节脚骨斜肌的装置,用于控制中风后个体中的膝关节。该器件在适当的时刻自动辅助膝关节的屈曲和延伸运动。我们旨在阐明该装置在步态期间对步态性能,运动模式和肌肉激活的影响。在本研究中招募了17名脑卒中后的参与者。他们用这个装置走了3分钟,我们测量了10M步态的时间,步骤数,使用电测仪和步态下肢肌肉活动的膝关节运动。通过使用具有辅助装置的设备改善的步态速度,步数和膝关节的范围,以及这些变化仍然没有辅助。对于肌电缩影在下肢中测量的肌肉活动,尽管该装置仅辅助肢体的一侧,但它能够改变垂直和非瘫痪的肢体。通过辅助瘫痪膝关节运动,该装置能够改善步态期间的性能,运动模式和肌肉激活,这仍然是后遗症。

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