A Vibrotactile Feedback Device for Balance Rehabilitation in the EksoGT™ Robotic Exoskeleton

Yi-Tsen Pan, Zachary Lamb, Jennifer Macievich, Katherine A. Strausser
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引用次数: 8

Abstract

Robotic exoskeletons have been used in physical therapy clinics for several years to help individuals with neurological impairments stand and walk. Exoskeletons, including EksoGT™, are used as rehabilitation tools to assist in gait re-training for those with the potential to restore some walking function. For patients with impaired proprioceptive systems, the exoskeleton can compensate for impaired sensory signals, thereby assisting in balance and gait training; however, not much information is provided to the patients in real-time about their balance. In this paper, we present a haptic device that can provide real-time balance feedback during standing in an EksoGT™. Sensory information is conveyed via a vibrotactile belt worn around the chest. Three subjects with spinal cord injuries (SCI) and eight able-bodied subjects were recruited to test the prototype and evaluate the efficacy of the additional biofeedback in balance training. Results show reduced postural sway in quiet standing tasks among both groups when vibrotactile feedback was enabled. Additional vibrotactile cues also assisted in guiding the subjects towards the target positions and kept the subjects within a safe region of standing balance. All subjects found the additional sensory feedback intuitive and they could control their postures actively. This preliminary study has demonstrated the potential therapeutic/in-home application of the additional haptic feedback in improving balance control for SCI patients.
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用于EksoGT™机器人外骨骼平衡康复的振动触觉反馈装置
机器人外骨骼已经在物理治疗诊所使用了好几年,以帮助有神经损伤的人站立和行走。包括EksoGT™在内的外骨骼被用作康复工具,帮助那些有可能恢复部分行走功能的人进行步态再训练。对于本体感觉系统受损的患者,外骨骼可以补偿受损的感觉信号,从而帮助平衡和步态训练;然而,并没有向患者提供关于他们的平衡的实时信息。在本文中,我们提出了一种可以在EksoGT™中站立时提供实时平衡反馈的触觉装置。感官信息通过佩戴在胸部周围的振动触觉带传递。选取3名脊髓损伤受试者和8名健全人受试者,对该模型进行测试,并评价生物反馈在平衡训练中的效果。结果显示,当振动触觉反馈开启时,两组人在安静站立任务中的姿势摇摆都减少了。额外的振动触觉提示也有助于引导受试者走向目标位置,并使受试者保持站立平衡的安全区域。所有受试者都发现额外的感官反馈是直观的,他们可以主动控制自己的姿势。这项初步研究证明了额外的触觉反馈在改善脊髓损伤患者平衡控制方面的潜在治疗/家庭应用。
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