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振动触觉反馈改善下肢假肢使用者在楼梯上的足部放置感知。

Vibrotactile Feedback Improves Foot Placement Perception on Stairs for Lower-Limb Prosthesis Users.

作者信息

Rokhmanova Nataliya, Rombokas Eric

出版信息

IEEE Int Conf Rehabil Robot. 2019 Jun;2019:1215-1220. doi: 10.1109/ICORR.2019.8779518.

Abstract

Lower-limb amputees demonstrate decreased performance in stair ambulation compared to their intact-limb counterparts. An estimated 21% of amputees can navigate stairs without a handrail; almost 33% do not use stairs at all. The absence of tactile sensation on the bottom of the foot, creating uncertainty in foot placement, may be overcome by integrating sensory feedback into prosthesis design. Here we describe the design and evaluation of a haptic feedback system worn on the thigh to provide vibrotactile cues of foot placement with respect to stair steps. Tactor discrimination and foot placement awareness tests were performed to analyze system efficacy. Control participants wearing ski boots (N=10) and below-knee amputees (N=2) could discriminate individual tactor vibrations with 95.4% and 90.1% accuracy, respectively. The use of vibrotactile feedback increased accuracy in reporting foot placement by 15% and 17.5%, respectively. These results suggest that using vibrotactile arrays for sensory feedback may improve stair descent performance in lower-limb amputees.

摘要

与肢体健全的人相比,下肢截肢者在上下楼梯时表现出能力下降。据估计,21%的截肢者可以在没有扶手的情况下上下楼梯;近33%的截肢者根本不使用楼梯。脚底缺乏触觉,导致足部放置位置不确定,这一问题可以通过将感官反馈整合到假肢设计中来克服。在此,我们描述了一种佩戴在大腿上的触觉反馈系统的设计与评估,该系统可提供有关足部相对于楼梯台阶放置位置的振动触觉提示。进行了触觉辨别和足部放置感知测试,以分析系统的有效性。穿着滑雪靴的对照参与者(N = 10)和膝下截肢者(N = 2)分别能够以95.4%和90.1%的准确率辨别单个触觉振动。使用振动触觉反馈分别使报告足部放置位置的准确率提高了15%和17.5%。这些结果表明,使用振动触觉阵列进行感官反馈可能会改善下肢截肢者的下楼梯表现。

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