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腰部对时间离散触觉反馈的感知与步态事件无关。

Perception of Time-Discrete Haptic Feedback on the Waist is Invariant With Gait Events.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2020 Jul;28(7):1595-1604. doi: 10.1109/TNSRE.2020.2984913. Epub 2020 Apr 24.

DOI:10.1109/TNSRE.2020.2984913
PMID:32340952
Abstract

The effectiveness of haptic feedback devices highly depends on the perception of tactile stimuli, which differs across body parts and can be affected by movement. In this study, a novel wearable sensory feedback apparatus made of a pair of pressure-sensitive insoles and a belt equipped with vibrotactile units is presented; the device provides time-discrete vibrations around the waist, synchronized with biomechanically-relevant gait events during walking. Experiments with fifteen healthy volunteers were carried out to investigate users' tactile perception on the waist. Stimuli of different intensities were provided at twelve locations, each time synchronously with one pre-defined gait event (i.e. heel strike, flat foot or toe off), following a pseudo-random stimulation sequence. Reaction time, detection rate and localization accuracy were analyzed as functions of the stimulation level and site and the effect of gait events on perception was investigated. Results revealed that above-threshold stimuli (i.e. vibrations characterized by acceleration amplitudes of 1.92g and 2.13g and frequencies of 100 Hz and 150 Hz, respectively) can be effectively perceived in all the sites and successfully localized when the intertactor spacing is set to 10 cm. Moreover, it was found that perception of time-discrete vibrations was not affected by phase-related gating mechanisms, suggesting that the waist could be considered as a preferred body region for delivering haptic feedback during walking.

摘要

触觉反馈设备的有效性高度依赖于触觉刺激的感知,而这种感知因身体部位的不同而有所差异,并且可能会受到运动的影响。在这项研究中,提出了一种由一对压力感应鞋垫和一条配备振动触觉单元的腰带组成的新型可穿戴式感觉反馈设备;该设备在腰部周围提供离散的时间振动,与行走时与生物力学相关的步态事件同步。通过对十五名健康志愿者进行实验,研究了用户在腰部的触觉感知。在 12 个位置提供不同强度的刺激,每次与一个预先定义的步态事件(即脚跟撞击、平足或脚趾离地)同步,采用伪随机刺激序列。分析了反应时间、检测率和定位准确性作为刺激水平和位置的函数,以及步态事件对感知的影响。结果表明,在所有位置都可以有效地感知超过阈值的刺激(即加速度幅值分别为 1.92g 和 2.13g、频率分别为 100Hz 和 150Hz 的振动),并且当交互器间距设置为 10cm 时,可以成功地对其进行定位。此外,还发现离散时间振动的感知不受与相位相关的门控机制的影响,这表明腰部可以被视为在行走时提供触觉反馈的首选身体区域。

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