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Preliminary Evaluation of a Powered Lower Limb Orthosis to Aid Walking in Paraplegic Individuals

机译:截瘫患者动力下肢矫形器辅助行走的初步评估

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This paper describes a powered lower-limb orthosis that is intended to provide gait assistance to spinal cord injured (SCI) individuals by providing assistive torques at both hip and knee joints. The orthosis has a mass of 12 kg and is capable of providing maximum joint torques of 40 Nm with hip and knee joint ranges of motion from 105$^{circ}$ flexion to 30 $^{circ}$ extension and 105 $^{circ}$ flexion to 10 $^{circ}$ hyperextension, respectively. A custom distributed embedded system controls the orthosis with power being provided by a lithium polymer battery which provides power for one hour of continuous walking. In order to demonstrate the ability of the orthosis to assist walking, the orthosis was experimentally implemented on a paraplegic subject with a T10 complete injury. Data collected during walking indicates a high degree of step-to-step repeatability of hip and knee trajectories (as enforced by the orthosis) and an average walking speed of 0.8 km/hr. The electrical power required at each hip and knee joint during gait was approximately 25 and 27 W, respectively, contributing to the 117 W overall electrical power required by the device during walking. A video of walking corresponding to the aforementioned data is included in the supplemental material.
机译:本文介绍了一种动力型下肢矫形器,该矫形器旨在通过在髋关节和膝盖关节处提供辅助扭矩为脊髓损伤(SCI)的个体提供步态帮助。矫形器的质量为12千克,能够提供最大的40 Nm的关节扭矩,髋关节和膝关节的屈伸范围从105美元屈伸到30美元屈伸和105美元{大约屈曲到10个超伸展。定制的分布式嵌入式系统通过由锂聚合物电池提供动力来控制矫形器,锂聚合物电池为连续行走一小时提供动力。为了证明矫形器辅助行走的能力,对具T10完全损伤的截瘫患者进行了矫形实验。步行过程中收集的数据表明,髋部和膝盖轨迹的逐步重复性较高(由矫形器强制执行),平均步行速度为0.8 km / hr。步态中每个髋关节和膝关节所需的功率分别约为25 W和27 W,从而为步行过程中该设备所需的117 W总功率提供了帮助。补充材料中包括与前述数据相对应的步行视频。

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