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用于下肢截肢者步态反馈的便携式触觉装置:评估静态和动态可感知性。

Portable haptic device for lower limb amputee gait feedback: Assessing static and dynamic perceptibility.

作者信息

Husman M A B, Maqbool H F, Awad M I, Dehghani-Sanij A A

出版信息

IEEE Int Conf Rehabil Robot. 2017 Jul;2017:1562-1566. doi: 10.1109/ICORR.2017.8009470.

Abstract

Loss of joints and severed sensory pathway cause reduced mobility capabilities in lower limb amputees. Although prosthetic devices attempt to restore normal mobility functions, lack of awareness and control of limb placement increase the risk of falling and causing amputee to have high level of visual dependency. Haptic feedback can serve as a cue for gait events during ambulation thus providing sense of awareness of the limb position. This paper presents a wireless wearable skin stretch haptic device to be fitted around the thigh region. The movement profile of the device was characterized and a preliminary work with able-bodied participants and an above-knee amputee to assess the ability of users to perceive the delivered stimuli during static and dynamic mode is reported. Perceptibility was found to be increasing with stretch magnitude. It was observed that a higher magnitude of stretch was needed for the stimuli to be accurately perceived during walking in comparison to static standing, most likely due to the intense movement of the muscle and increased motor skills demand during walking activity.

摘要

关节缺失和感觉通路切断导致下肢截肢者的活动能力下降。尽管假肢装置试图恢复正常的移动功能,但对肢体位置缺乏感知和控制会增加跌倒风险,并使截肢者对视觉有高度依赖。触觉反馈可以作为行走过程中步态事件的提示,从而提供肢体位置的感知。本文介绍了一种可穿戴在大腿周围的无线皮肤拉伸触觉装置。对该装置的运动特征进行了表征,并报告了与健全参与者和一名膝上截肢者进行的初步研究,以评估用户在静态和动态模式下感知所传递刺激的能力。发现可感知性随着拉伸幅度的增加而提高。据观察,与静态站立相比,行走过程中需要更大幅度的拉伸才能准确感知刺激,这很可能是由于行走活动中肌肉的剧烈运动和对运动技能的需求增加所致。

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