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Gait support for complete spinal cord injury patient by synchronized leg-swing with HAL

机译:通过与HAL同步进行腿部摆动来为完全脊髓损伤患者提供步态支持

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Biped walking improves the circulation of blood as well as bone density of the lower limbs, thereby enhancing the quality of life (QOL). It is significant not only to healthy people but also to physically challenged persons such as complete spinal cord injury (SCI) patients. The purpose of this paper is to propose an estimation algorithm that infers the intention related to the forward leg-swing in order to support the gait for complete SCI patients wearing an exoskeleton system called a Hybrid Assistive Limb (HAL), and to verify the effectiveness of the proposed algorithm through a clinical trial. The proposed algorithm infers the patient's intention in synchronization with the deviation of the center of the ground reaction force (CoGRF) that is observed immediately before a person starts walking. The patient conveys this intention by inducing the deviation of the CoGRF, using crutches or handrails with both of his/her arms. In the clinical trial, we confirmed that the algorithm inferred the patient's intention to swing the leg forward, and achieved a smooth gait in synchronization with it. As a result, the gait speed and cadence of the SCI patient with HAL during the 10-meter walking test increased to 6.67 [m/min] and 20 [steps/min], respectively after several trials.
机译:两足动物步行可以改善血液循环以及下肢的骨密度,从而提高生活质量(QOL)。这不仅对健康人有重要意义,而且对身体残障人士(例如完全脊髓损伤(SCI)患者)也很重要。本文的目的是提出一种推断算法,该算法可推断与前腿摆动有关的意图,以支持佩戴外骨骼系统的完整SCI患者的步态,即混合辅助肢体(HAL),并验证其有效性。通过临床试验对提出的算法进行验证。所提出的算法与患者刚开始行走之前观察到的地面反作用力(CoGRF)中心的偏差同步地推断患者的意图。病人通过使用拐杖或扶手来引导CoGRF,从而传达这种意图。在临床试验中,我们证实了该算法可以推断出患者向前摆动小腿的意图,并实现了与之同步的平稳步态。结果,经过几次试验,在10米步行测试中,患有SAL的SCI HAL患者的步态速度和节奏分别提高到6.67 [m / min]和20 [steps / min]。

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