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A muscle-driven approach to restore stepping with an exoskeleton for individuals with paraplegia

机译:针对截瘫患者的肌肉驱动方法可通过外骨骼恢复踩踏

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摘要

BackgroundFunctional neuromuscular stimulation, lower limb orthosis, powered lower limb exoskeleton, and hybrid neuroprosthesis (HNP) technologies can restore stepping in individuals with paraplegia due to spinal cord injury (SCI). However, a self-contained muscle-driven controllable exoskeleton approach based on an implanted neural stimulator to restore walking has not been previously demonstrated, which could potentially result in system use outside the laboratory and viable for long term use or clinical testing. In this work, we designed and evaluated an untethered muscle-driven controllable exoskeleton to restore stepping in three individuals with paralysis from SCI.
机译:背景技术功能性神经肌肉刺激,下肢矫形器,下肢动力外骨骼和混合神经假体(HNP)技术可以恢复因脊髓损伤(SCI)导致的截瘫患者的踩踏能力。但是,以前尚未证明过基于植入式神经刺激器来恢复步行的自足式肌肉驱动可控外骨骼方法,这有可能导致系统在实验室外使用,并且可以长期使用或进行临床测试。在这项工作中,我们设计和评估了不受束缚的肌肉驱动的可控外骨骼,以恢复三名SCI瘫痪患者的踩踏。

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