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Unperceivable noise to active light touch effects on fast postural sway

机译:姿势快速摆动时主动光触摸效果产生的不可察觉的噪声

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摘要

Human postural sway during quiet standing is reduced when a fingertip lightly touches a stable surface. The tactile feedback information from the fingertip has been considered responsible for this effect of light touch. Studies have shown that a noise-like minute stimulation to the sensory system can improve the system's weak signal detection. In the present study, we investigated whether a noise-like unperceivable vibration on the fingertip enhances its tactile sensation and facilitates the effect of light touch during quiet standing. Thirteen volunteers maintained quiet standing while lightly touching a touch surface with the index fingertip. Based on each subject's vibrotactile threshold (VT), a noise-like vibration was applied to the touch surface at amplitudes under (0.5VT) or at VT (1.0VT), in addition to the normal light touch condition (no vibration, 0VT). The results showed that the mean velocities of the foot center of pressure (CoP) in both the anteroposterior (AP) and mediolateral (ML) directions were significantly reduced at 0.5VT compared to 0VT and 1.0VT (P< 0.05), while there was no significant difference between 1.0VT and 0VT (P> 0.05). Frequency analysis of CoP revealed that the power of high-frequency fluctuation (1-10. Hz) was significantly reduced at 0.5VT (P< 0.05), whereas no significant change was observed in that of low-frequency sway (below 1. Hz) (P> 0.05). These results indicate that an unperceivable noise-like vibration can facilitate the effect of light touch on postural stability, by further reducing fast postural sway.
机译:当指尖轻轻触摸稳定的表面时,可以减少安静站立时的人体姿势摇摆。来自指尖的触觉反馈信息被认为是造成这种轻触效果的原因。研究表明,对感觉系统的类似噪声的微小刺激可以改善系统的微弱信号检测。在本研究中,我们研究了指尖上的类似噪声的不可感知的振动是否会增强其触感,并促进安静站立时轻触的效果。 13名志愿者保持安静的站立状态,同时用食指轻轻触摸触摸表面。根据每个受试者的触觉阈值(VT),除了正常的轻触条件(无振动,0VT)外,还会在触摸表面上以(0.5VT)或VT(1.0VT)的幅度施加类似噪声的振动。 。结果显示,在0.5VT时,与0VT和1.0VT相比,前后(AP)和后外侧(ML)方向的足部压力中心(CoP)的平均速度显着降低(P <0.05)。 1.0VT和0VT之间无显着差异(P> 0.05)。 CoP的频率分析显示,在0.5VT时,高频波动的功率(1-10。Hz)显着降低(P <0.05),而在低频波动(1. Hz以下)的功率没有明显变化。 )(P> 0.05)。这些结果表明,不可感知的类似噪声的振动可以通过进一步减少快速的姿势摇摆来促进轻触对姿势稳定性的影响。

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