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A novel Treadmill Body Weight Support system using Pneumatic Artificial Muscle actuators: a comparison between active Body Weight Support system and counter weight system

机译:一种新型跑步机体重支持系统,采用气动人工肌致动器:活性体重支持系统与反重系统的比较

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In recent years, Treadmill Body Weight Support System has been developed and proved the improvement for patients who recover from Spinal Cord Injury. Passive and dynamic systems were shown their capacities to maintain unloading force in the vertical direction, however, there are no system considered that track the moving of the Center of Pressure trajectory during gait training. Our hypothesis is that tracking Center of Pressure trajectory, during gait training, could be more effective than the common system. This paper proposed a new active Body Weight Support system using Pneumatic Artificial Muscle actuators. An active model of new Body Weight Support system with the tracking model of the human center of pressure was developed. The validation tests experiments were implemented with three levels of unloading force 30%, 50% and 70% using new Body Weight Support system and counter weight system for comparison. The speed of the treadmill is set, for all the experiments at 2 km/h. Center of pressure trajectories are recorded for a normal random walk, for the counter weight system and for the Body Weight Support systems. The results showed that the center of pressure trajectory using active system was much fitter with center of pressure pattern of normal gait than counter weight system.
机译:近年来,已经开发出跑步机体重支持系统,并证明了从脊髓损伤中恢复的患者的改善。被动和动态系统被示出了它们在垂直方向上保持卸载力的能力,然而,没有被认为是在步态训练期间追踪压力轨迹的中心的移动。我们的假设是,在步态培训期间,压力轨迹的跟踪中心可能比公共系统更有效。本文提出了一种新的活性体重支持系统,使用气动人工肌致动器。开发了具有人类压力中心跟踪模型的新型体重支持系统的活动模型。使用新的体重支撑系统和反重权重系统,用三个卸荷力实施了验证试验实验,卸载力30%,50%和70%,以进行对比。为2 km / h的所有实验设置跑步机的速度。压力轨迹的中心被记录为正常随机行走,用于对压力系统和体重支持系统。结果表明,使用活性系统的压力轨迹的中心与正常步态的压力模式的中心比反重系统更牢固。

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